Single-Site Catalysts
Bertrand Heurtefeu
Université de Bordeaux, Laboratoire de Chimie des Polymères Organiques, Pessac Cedex, France
CNRS, Laboratoire de Chimie des Polymères Organiques, Pessac Cedex, France
Search for more papers by this authorFlorent Vaultier
Université de Lyon, Université. Lyon 1, Laboratoire de Chimie Catalyse Polymères et Procédés, Villeurbanne, France
Search for more papers by this authorReko Leino
Laboratory of Organic Chemistry, Åbo Akademi University, Åbo, Finland
Search for more papers by this authorChristophe Boisson
Université de Lyon, Université. Lyon 1, Laboratoire de Chimie Catalyse Polymères et Procédés, Villeurbanne, France
Search for more papers by this authorHenri Cramail
Université de Bordeaux, Laboratoire de Chimie des Polymères Organiques, Pessac Cedex, France
CNRS, Laboratoire de Chimie des Polymères Organiques, Pessac Cedex, France
Search for more papers by this authorBertrand Heurtefeu
Université de Bordeaux, Laboratoire de Chimie des Polymères Organiques, Pessac Cedex, France
CNRS, Laboratoire de Chimie des Polymères Organiques, Pessac Cedex, France
Search for more papers by this authorFlorent Vaultier
Université de Lyon, Université. Lyon 1, Laboratoire de Chimie Catalyse Polymères et Procédés, Villeurbanne, France
Search for more papers by this authorReko Leino
Laboratory of Organic Chemistry, Åbo Akademi University, Åbo, Finland
Search for more papers by this authorChristophe Boisson
Université de Lyon, Université. Lyon 1, Laboratoire de Chimie Catalyse Polymères et Procédés, Villeurbanne, France
Search for more papers by this authorHenri Cramail
Université de Bordeaux, Laboratoire de Chimie des Polymères Organiques, Pessac Cedex, France
CNRS, Laboratoire de Chimie des Polymères Organiques, Pessac Cedex, France
Search for more papers by this authorAbstract
The recent rapid development of organometallic single-site catalysts (SSCs) has revolutionized polyolefin research and permitted the production of new specialty polymers and commodity polyolefins with improved properties. These well-defined catalyst systems generally consist of a transition metal atom, such as titanium, zirconium, hafnium, iron, nickel, or palladium, complexed with an organic ligand set and an initiating group. In most cases, activation with methylaluminoxane or compounds bearing a weakly coordinating anions generates cationic-active species responsible for olefin coordination and polymer chain growth. Representative examples of SSCs include the bis(cyclopentadienyl) or bis(phenoxyimine)-type group 4 catalysts as well as the diimine complexes of nickel and palladium. By variation of the organic ligand and thus the steric and electronic environment of the metal center, these catalysts can be tailored to control the olefin polymerization reaction in an unprecedented fashion. Almost any vinyl monomer, irrespective of molecular weight or steric hindrance, can be polymerized by choosing the proper catalyst. Virtually all feasible poly(α-olefin) microstructures ranging from atactic to isotactic, hemiisotactic, syndiotactic, and stereoblock polymers can be produced by rational modification of the catalyst structure. Functional monomers are readily copolymerized with the less oxophilic late transition metal catalysts. Entirely new materials, not accessible with traditional Ziegler–Natta catalysts, have emerged, including high melting syndiotactic polystyrene and cycloaliphatic polymers. This article provides a broad overview of SSCs and their application in olefin polymerization. Evolution and classification of SSCs, polymerization of ethylene, propylene, as well as functional olefins, macromolecular architecture bearing polyolefin blocks are covered. Finally, heterogenization of SSCs for use in industrial processes is described.
Bibliography
“Single-Site Catalysts” in EPST 3rd ed., Vol. 4, pp. 136–179, by Reko Leino, Åbo Akademi University, Turku, Finland.
Cited Publications
- 1 G. Adams, In A Global Update on Polyolefin Polymers and Monomers, SPE International Polyolefins Conference, Houston, Tex, 2008.
- 2 DE 973626 (1953), K. Ziegler, H. Breil, E. Holzkamp, H. Martin.
- 3 K. Ziegler, E. Holzkamp, H. Breil, and H. Martin, Angew. Chem. 67, 426–426 (1955).
- 4 K. Ziegler, Angew. Chem. 76, 545–553 (1964).
- 5 IT 526101 (1954), G. Natta, P. Pino, and G. Mazzanti. Montecatini.
- 6 G. Natta, P. Pino, P. Corradini, F. Danusso, E. Mantica, and M. G. Moraglio, J. Am. Chem. Soc. 77, 1708–1710 (1955).
- 7 G. Natta, J. Polym. Sci. 16, 143–154 (1955).
- 8 G. Natta, Angew. Chem. 68, 393–403 (1956).
- 9 G. Natta, Angew. Chem. 76, 553–566 (1964).
- 10 H. Sinn, and W. Kaminsky, Adv. Organomet. Chem. 18, 99–149 (1980).
- 11 T. Simonazzi and U. Giannini, Gazz. Chim. Ital. 124, 533–541 (1994).
- 12 P. Galli, Macromol. Symp. 89, 13–16 (1995).
- 13 M. P. McDaniel, Adv. Catal. 53, 123–606 (2010).
- 14 K. B. Sinclair and R. B. Wilson, Chem. Ind. (London) 857–862 (1994).
- 15 P. C. Möhring and N. J. Coville, J. Organomet. Chem. 479, 1–29 (1994).
- 16 H. H. Brintzinger, D. Fischer, R. Mülhaupt, B. Rieger, and R. M. Waymouth, Angew. Chem., Int. Ed. Engl. 34, 1143–1170 (1995).
- 17
G. W. Coates and
R. M. Waymouth, in
E. W. Abel,
F. G. A. Stone, and
G. Wilkinson, eds.,
Comprehensive Organometallic Chemistry II,
Pergamon,
Oxford, UK,
1995.
10.1016/B978-008046519-7.00140-4 Google Scholar
- 18 S. S. Reddy and S. Sivaram, Prog. Polym. Sci. 20, 309–367 (1995).
- 19 M. Bochmann, J. Chem. Soc., Dalton Trans 255–270 (1996).
- 20 W. Kaminsky, Macromol. Chem. Phys. 197, 3907–3945 (1996).
- 21 A. E. Hamielec, and J. B. P. Soares, Prog. Polym. Sci. 21, 651–706 (1996).
- 22 R. H. Grubbs and G. W. Coates, Acc. Chem. Res. 29, 85–93 (1996).
- 23 M. Bochmann, Curr. Opin. Solid State Mater. Sci. 2, 639–646 (1997).
- 24 W. Kaminsky and M. Arndt, Adv. Polym. Sci. 127, 143–187 (1997).
- 25 A. A. Montagna, A. H. Dekmezian, and R. M. Burkhart, CHEMTECH 27 (12), 26–31 (1997).
- 26 W. Kaminsky, J. Chem. Soc., Dalton Trans 1413–1418 (1998).
- 27 A. L. McKnight and R. M. Waymouth, Chem. Rev. 98, 2587–2598 (1998).
- 28
G. J. P. Britovsek,
V. C. Gibson, and
D. F. Wass,
Angew. Chem., Int. Ed.
38,
428–447
(1999).
10.1002/(SICI)1521-3773(19990215)38:4<428::AID-ANIE428>3.0.CO;2-3 CAS PubMed Web of Science® Google Scholar
- 29 I. Tritto and U. Giannini, Macromol. Symp. 89, 1–586 (1995).
- 30 H. Sinn and W. Kaminsky, Macromol. Symp. 97, 1–246 (1995).
- 31 R. F. Jordan, J. Mol. Catal. A: Chem. 128, 1–337 (1998).
- 32 T. J. Marks and J. C. Stevens, eds., Topics Catal. 7, 1–210 (1999).
- 33 J. A. Gladysz, Chem. Rev. 100, 1167–1682 (2000).
- 34 G. Fink, R. Mülhaupt, H. H. Brintzinger, eds., Ziegler Catalysts: Recent Scientific and Technological Improvements, Springer-Verlag, Berlin, 1995.
- 35 A. Togni, R. L. Halterman, eds., Metallocenes, Wiley-VCH Verlag GmbH & Co. KgaA, Weinheim, Germany, 1998.
- 36 G. M. Benedikt and B. L. Goodall, eds., Metallocene Catalyzed Polymers. Materials, Properties, Processing & Markets, Plastics Design Library, New York, 1998.
- 37 G. M. Benedikt, ed., Metallocene Technology in Commercial Applications, Plastics Design Library, New York, 1999.
- 38
W. Kaminsky,
Metalorganic Catalysts for Synthesis and Polymerization: Recent Results by Ziegler–Natta and Metallocene Investigations,
Springer-Verlag, Berlin,
Germany,
1999.
10.1007/978-3-642-60178-1 Google Scholar
- 39 J. Scheirs and W. Kaminsky, eds., Metallocene-Based Polyolefins. Preparation, Properties and Technology, John Wiley & Sons, New York, 1999.
- 40 P. Arjunan, J. E. McGrath, and T. L. Hanlon, eds., Olefin Polymerization: Emerging Frontiers, ACS Symposium Series, Vol. 2000, American Chemical Society, Washington, D.C., 2000.
- 41 J. Qiao, M. Guo, L. Wang, D. Liu, X. Zhang, L. Yu, W. Song, and Y. Liu, Polym. Chem, 2, 1611–1623 (2011).
- 42 D. Takeuchi, Dalton Trans. 39, 311–328 (2010).
- 43 P. D. Hustad, Science 325, 704–707 (2009).
- 44 G. J. Domski, J. M. Rose, G. W. Coates, A. D. Bolig, and M. Brookhart, Prog. Polym. Sci. 32 (1), 30–92 (2007).
- 45 V. Busico, Macromol. Chem. Phys. 208 (1), 26–29 (2007).
- 46 P. Galli and G. Vecellio, J. Polym. Sci., Part A: Polym. Chem. 42, 396–415 (2004).
- 47 R. Mulhaupt, Macromol. Chem. Phys. 204, 289–327 (2003).
- 48 V. C. Gibson and S. K. Spitzmesser, Chem. Rev. 103, 283–315 (2003).
- 49 D. S. Breslow and N. R. Newburg, J. Am. Chem. Soc. 79, 5072–5073 (1957).
- 50 D. S. Breslow and N. R. Newburg, J. Am. Chem. Soc. 81, 81–86 (1959).
- 51 G. Natta, P. Pino, G. Mazzanti, and U. Giannini, J. Am. Chem. Soc. 79, 2975–2976 (1957).
- 52 H. Sinn and F. Patat, Angew. Chem. 70, 5 (1958).
- 53 G. Natta, P. Corradini, and I. W. Bassi, J. Am. Chem. Soc. 80, 755–756 (1958).
- 54 J. C. W. Chien, J. Am. Chem. Soc. 81, 86–92 (1959).
- 55 W. P. Long and D. S. Breslow, J. Am. Chem. Soc. 82, 1953–1957 (1960).
- 56 G. Mazzanti and G. Natta, Tetrahedron 8, 86–100 (1960).
- 57
G. Henrici-Olivé and
S. Olivé,
Angew. Chem.
79,
764–773
(1967).
10.1002/ange.19670791705 Google Scholar
- 58 G. Henrici-Olivé, and S. Olivé, J. Organomet. Chem. 16, 339–341 (1969).
- 59 K. H. Reichert and K. R. Meyer, Makromol. Chem. 169, 163–176 (1973).
- 60 W. P. Long and D. S. Breslow, Liebigs Ann. Chem 3, 463–469 (1975).
- 61 A. Andersen, H. G. Cordes, J. Herwig, W. Kaminski, A. Merck, R. Mottweiler, J. Pein, H. Sinn, and H. J. Vollmer, Angew. Chem., Int. Ed. Engl. 15, 630–632 (1976).
- 62 H. Sinn, W. Kaminsky, and H. J. Vollmer, Angew. Chem., Int. Ed. Engl. 19, 390–392 (1980).
- 63 J. Herwig, and W. Kaminsky, Polym. Bull. 9, 464–469 (1983).
- 64 W. Kaminsky, M. Miri, H. Sinn, and R. Woldt, Makromol. Chem., Rapid Commun. 4, 417–421 (1983).
- 65 J. A. Ewen, J. Am. Chem. Soc. 106, 6355–6364 (1984).
- 66 W. Kaminsky, K. Külper, H. H. Brintzinger, and F. R. W. P. Wild, Angew. Chem., Int. Ed. Engl. 24, 507–508 (1985).
- 67 H. Schnutenhaus and H. H. Brintzinger, Angew. Chem., Int. Ed. Engl. 18, 777–778 (1979).
- 68 F. R. W. P. Wild, L. Zsolnai, G. Huttner, and H. H. Brintzinger, J. Organomet. Chem. 232, 233–247 (1982).
- 69 F. R. W. P. Wild, M. Wasiucionek, G. Huttner, and H. H. Brintzinger, J. Organomet. Chem. 288, 63–67 (1985).
- 70 J. A. Ewen, R. L. Jones, A. Razavi, and J. D. Ferrara, J. Am. Chem. Soc. 110, 6255–6256 (1988).
- 71 J. A. Ewen, M. J. Elder, R. L. Jones, L. Halpeslagh, J. L. Atwood, S. G. Bott, and K. Robinson, Makromol. Chem., Macromol. Symp. 48/49, 253–295 (1991).
- 72 G. W. Coates, and R. M. Waymouth, Science 267, 217–219 (1995).
- 73 E. Hauptman, R. M. Waymouth, and J. W. Ziller, J. Am. Chem. Soc. 117, 11586–11587 (1995).
- 74 U. Stehling, J. Diebold, R. Kirsten, W. Roell, H. H. Brintzinger, S. Juengling, R. Muelhaupt, and F. Langhauser, Organometallics 13, 964–970 (1994).
- 75 E. Barsties, S. Schaible, M. H. Prosenc, U. Rief, W. Roell, O. Weyand, B. Oorer, and H. H. Brintzinger, J. Organomet. Chem. 520, 63–68 (1996).
- 76 N. Schneider, M. E. Huttenloch, U. Stehling, R. Kirsten, F. Schaper, and H. H. Brinzinger, Organometallics 16, 3413–3420 (1997).
- 77 W. A. Herrmann, J. Rohrmann, E. Herdtweck, W. Spaleck, and A. Winter, Angew. Chem., Int. Ed. Engl. 28, 1511–1512 (1989).
- 78 W. Spaleck, M. Antberg, V. Dolle, R. Klein, J. Rohrmann, and A. Winter, New. J. Chem. 14, 499–503 (1990).
- 79 W. Spaleck, M. Antberg, J. Rohrmann, A. Winter, B. Bachmann, P. Kiprof, J. Behm, and W. A. Herrmann, Angew. Chem., Int. Ed. Engl. 31, 1347–1350 (1992).
- 80 W. Spaleck, F. Kueber, A. Winter, J. Rohrmann, B. Bachmann, M. Antberg, V. Dolle, and E. F. Paulus, Organometallics 13, 954–963 (1994).
- 81 J. A. Ewen, Macromol. Symp. 89, 181–196 (1995).
- 82 J. A. Ewen, R. L. Jones, M. J. Elder, A. L. Rheingold, L.-L. M. Sands, J. Am. Chem. Soc. 120, 10786–10787 (1998).
- 83 I. K. Lee, W. J. Gauthier, J. M. Ball, B. Iyengar, and S. Collins, Organometallics 11, 2115–2122 (1992).
- 84 D. Veghini, L. M. Henling, T. J. Brookhart, and J. E. Bercaw, J. Am. Chem. Soc. 121, 564–573 (1999).
- 85 A. Razavi, and J. L. Atwood, J. Organomet. Chem. 459, 117–123 (1995).
- 86 R. L. Halterman, Chem. Rev. 92, 965–994 (1992).
- 87 Z. Chen, and R. L. Halterman, Organometallics 13, 3932–3942 (1994).
- 88 R. L. Halterman, D. Combs, and M. A. Khan, Organometallics 17, 3900–3907 (1998).
- 89 N. Piccolrovazzi, P. Pino, G. Consiglio, A. Sironi, and M. Moret, Organometallics 9, 3098–3105 (1990).
- 90 L. Resconi, R. L. Jones, A. L. Rheingold, G. P. A. Yap, Organometallics 15, 998–1005 (1996).
- 91 L. Resconi, E. Piemontesi, I. Camurati, D. Balboni, A. Siromi, M. Moret, H. Rychlinski, and R. Ziegler, Organometalllics 15, 5046–5059 (1996).
- 92 L. Resconi, F. Piemontesi, I. Camurati, O. Sudmeijer, I. E. Nifantev, P. V. Ivchenko, and L. G. Kuzmina, J. Am. Chem. Soc. 120, 2308–2321 (1998).
- 93 C. J. Schaverien, R. Ernst, P. Schut, W. M. Skiff, L. Resconi, E. Barbassa, D. Balboni, Y. A. Dubitsky, A. G. Orpen, P. Mercandelli, M. Moret, and A. Sironi, J. Am. Chem. Soc. 120, 9945–9946 (1998).
- 94 V. A. Dang, L. C. Yu, D. Balboni, D. T. Occo, L. Resconi, P. Mercandelli, M. Moret, and A. Sironi, Organometallics 18, 3781–3791 (1999).
- 95 B. Rieger, G. Jany, R. Fawzi, and M. Steimann, Organometallics 13, 647–653 (1994).
- 96 U. Dietrich, M. Hackmann, B. Rieger, M. Klinga, and M. Laskelä, J. Am. Chem. Soc. 121, 4348–4355 (1999).
- 97 H. G. Alt, W. Milius, and S. J. Palackal, J. Organomet. Chem. 472, 113–118 (1994).
- 98 R. Leino, H. Luttikhedde, C.-E. Wilén, R. Sillanpää, and J. H. Näsman, Organometallics 15, 2450–2453 (1996).
- 99 H. J. G. Luttikhedde, R. P. Leino, C. E. Wilen, J. H. Näsman, M. J. Ahlgren, T. A. Pakkanen, Organometallics 15, 3092–3094 (1996).
- 100
K. A. Ostoja Starzewski,
W. M. Kelly,
A. Stumpf, and
D. Freitag,
Angew. Chem., Int. Ed.
38,
2439–2443
(1999).
10.1002/(SICI)1521-3773(19990816)38:16<2439::AID-ANIE2439>3.0.CO;2-E PubMed Web of Science® Google Scholar
- 101 W. Kaminsky, J. Polym. Sci., Part A: Polym. Chem. 42, 3911–3921 (2004).
- 102 L. Resconi, L. Cavallo, A. Fait, and F. Piemontesi, Chem. Rev. 100, 1253–1346 (2000).
- 103 P. L. Watson, J. Am. Chem. Soc. 104, 337–339 (1982).
- 104 P. L. Watson, J. Am. Chem. Soc. 104, 6471–6473 (1982).
- 105 D. Stern, M. Sabat, and T. J. Marks, J. Am. Chem. Soc. 112, 9558–9575 (1990).
- 106 P. J. Shapiro, E. E. Bunel, W. P. Schaefer, and J. E. Bercaw, Organometallics 9, 867–869 (1990).
- 107 P. J. Shapiro, W. D. Cotter, W. P. Schaefer, J. A. Labinger, and J. E. Bercaw, J. Am. Chem. Soc. 116, 4623–4640 (1994).
- 108 J. P. Mitchell, S. Hajela, S. K. Brookhart, K. I. Hard Castle, L. M. Henling, and J. E. Bercaw, J. Am. Chem. Soc. 118, 1045–1053 (1996).
- 109 J. H. Gilchrist and J. E. Bercaw, J. Am. Chem. Soc. 118, 12021–12028 (1996).
- 110 M. B. Abrams, J. C. Yoder, C. Loeber, M. W. Day, and J. E. Bercaw, Organometallics 18, 1389–1401 (1999).
- 111 E. Ihara, M. Nodono, H. Yasuda, N. Kanehisa, and Y. Kai, Macromol. Chem. Phys. 197, 1909–1917 (1996).
- 112 F. Barbotin, V. Monteil, M. F. Llauro, C. Boisson, and R. Spitz, Macromolecules 33 (23), 8521–8523 (2000).
- 113 C. Boisson, V. Monteil, D. Ribour, R. Spitz, and F. Barbotin, Macromol. Chem. Phys. 204 (14), 1747–1754 (2003).
- 114 C. Boisson, V. Monteil, J. Thuilliez, R. Spitz, C. Monnet, M. F. Llauro, F. Barbotin, and P. Robert, Macromol. Symp. 226, 17–23 (2005).
- 115 J. Thuilliez, V. Monteil, R. Spitz, and C. Boisson, Angew. Chem., Int. Ed. 44, 2593 (2005).
- 116 J. Thuilliez, L. Ricard, F. O. Nief, F. Boisson, and C. Boisson, Macromolecules 42, 3774–3779 (2009).
- 117 D. Barbier-Baudry, A. Dormond, and P. Desmurs, Compt. Rend. Acad. Sci., Ser. IIc: Chim. 2, 375–378 (1999).
- 118 D. Barbier-Baudry, F. Bonnet, A. Dormond, A. Hafid, A. Nyassi, and M. Visseaux, J. Alloys Compd. 323–324, 592–596 (2001).
- 119 M. Visseaux, D. Barbier-Baudry, F. Bonnet, and A. Dormond, Macromol. Chem. Phys. 202, 2485–2488 (2001).
- 120 F. Bonnet, M. Visseaux, D. Barbier-Baudry, A. Dormond, Macromolecules 35, 1143–1145 (2002).
- 121 J. Okuda, Chem. Ber. 123, 1649–1651 (1990).
- 122 J. Okuda, F. J. Schattenmann, S. Wocadlo, and W. Massa, Organometallics 14, 789–795 (1995).
- 123 F. Amor and J. Okuda, J. Organomet. Chem. 520, 245–248 (1996).
- 124 D. W. Carpenetti, L. Kloppenburg, J. T. Kupec, and J. L. Petersen, Organometallics 15, 1572–1581 (1996).
- 125 S. Ciruelos, T. Cuenca, R. Gomez, P. Gomez-Sal, A. Manzanero, and P. Royo, Organometallics 15, 5577–5585 (1996).
- 126 F. G. Sernetz, R. Mülhaupt, and R. M. Waymouth, Macromol. Chem. Phys. 197, 1071–1083 (1996).
- 127 F. G. Sernetz, R. Mülhaupt, F. Amor, T. Eberle, and J. Okuda, J. Polym. Sci., Part A: Polym. Chem. 35, 1571–1578 (1997).
- 128 A. L. McKnight, M. A. Masood, R. M. Waymouth, and D. A. Straus, Organometallics 16, 2879–2885 (1997).
- 129 Y. X. Chen and T. J. Marks, Organometallics 16, 3649–3657 (1997).
- 130 P. J. Sinnema, L. Van der Veen, A. L. Spek, N. Veldman, and J. H. Teuben, Organometallics 16, 4245–4247 (1997).
- 131
L. Duda,
G. Erker,
R. Fröhlich, and
F. Zippel,
Eur. J. Inorg. Chem.
1153–1162
(1998).
10.1002/(SICI)1099-0682(199808)1998:8<1153::AID-EJIC1153>3.0.CO;2-R CAS Web of Science® Google Scholar
- 132 A. Bertuleit, M. Könemann, L. Duda, G. Erker, R. Fröhlich, Top. Catal. 7, 37–44 (1999).
- 133 EP 416815 (1991), J. C. Stevens, F. J. Timmers, D. R. Wilson, G. F. Schmidt, P. N. Nickias, R. K. Rosen, G. N. Knight, S.-Y. Lai, The Dow Chemical Company.
- 134 EP 420436 (1991), J. A. M. Canich, Exxon Chemical.
- 135 B. Rieger, J. Organomet. Chem. 420, C17–C20 (1991).
- 136 Y. X. Chen, P. Fu, C. L. Stern, and T. J. Marks, Organometallics 16, 5958–5963 (1997).
- 137 E. E. C. G. Gielens, J. Y. Tiesnitsch, B. Hessen, and J. H. Teuben, Organometallics 17, 1652–1654 (1998).
- 138 N. Ishihara, T. Seimiya, M. Kuramuto, and M. Uoi, Macromolecules 19, 2464–2465 (1986).
- 139 N. Ishihara, M. Kuramoto, and M. Uoi, Macromolecules 21, 3356–3360 (1988).
- 140 N. Ishihara, Macromol. Symp. 89, 553–562 (1995).
- 141 T. E. Ready, R. O. Doy, J. C. W. Chien, and M. D. Rausch, Macromolecules 26, 5822–5823 (1993).
- 142 A. Kucht, H. Kucht, S. Barry, J. C. W. Chien, and M. D. Rausch, Organometallics 12, 3075–3078 (1993).
- 143 T. E. Ready, J. C. W. Chien, and M. D. Rausch, J. Organomet. Chem. 519, 21–28 (1996).
- 144 P. Foster, J. C. W. Chien, and M. D. Rausch, Organometallics 15, 2404–2409 (1996).
- 145 A. Zambelli, L. Oliva, and C. Pellecchie, Macromolecules 22, 2129–2130 (1989).
- 146 C. Pellecchie, D. Pappalardo, L. Oliva, and A. Zambelli, J. Am. Chem. Soc. 117, 6593–6594 (1995).
- 147 A. Grassi, S. Saccheo, A. Zambelli, and F. Laschi, Macromolecules 31, 5588–5591 (1998).
- 148 C. Pellecchie, and A. Grassi, Top. Catal. 7, 125–132 (1999).
- 149 W. Kaminsky, S. Lenk, V. Scholz, H. W. Roesky, and A. Herzog, Macromolecules 25, 7647–7650 (1997).
- 150 N. Schneider, M. H. Prosenc, and H. H. Brintzinger, J. Organomet. Chem. 545/546, 291–295 (1997).
- 151 G. Xu, Macromolecules 31, 586–591 (1998).
- 152 E. F. Williams, M. C. Murray, and M. C. Baird, Macromolecules 33, 261–268 (2000).
- 153 R. Quyoum, Q. Wang, M. J. Tudoret, M. C. Baird, and D. J. Gillis, J. Am. Chem. Soc. 116, 6435–6436 (1994).
- 154 Q. Wang, R. Quyoum, D. J. Gillis, M. J. Tudoret, D. Jeremic, B. K. Hunter, and M. C. Baird, Organometallics 15, 693–703 (1996).
- 155 T. L. Tremblay, S. W. Ewart, M. J. Sarsfield, and M. C. Baird, Chem. Commun, 831–832 (1997).
- 156 S. W. Ewart and M. C. Baird, Top. Catal. 7, 1–8 (1999).
- 157 M. C. Baird, Chem. Rev. 100, 1471–1478 (2000).
- 158 H. Braunschweig, and F. M. Breitling, Coord. Chem. Rev. 250 (21–22), 2691–2720 (2006).
- 159
G. J. P. Britovsek,
V. C. Gibson, and
D. F. Wass,
Angew. Chem., Int. Ed.
38,
428–447
(1999).
10.1002/(SICI)1521-3773(19990215)38:4<428::AID-ANIE428>3.0.CO;2-3 CAS PubMed Web of Science® Google Scholar
- 160 V. C. Gibson, and S. K. Spitzmesser, Chem. Rev. 103 (1), 283–316 (2002).
- 161
S. Mecking,
Angew. Chem., Int. Ed.
40,
534–540
(2001).
10.1002/1521-3773(20010202)40:3<534::AID-ANIE534>3.0.CO;2-C CAS PubMed Web of Science® Google Scholar
- 162 M. Peuckert, and W. Keim, Organometallics 2, 594–597 (1983).
- 163 G. Wilke, Angew. Chem., Int. Ed. Engl. 27, 185–206 (1988).
- 164 W. Keim, F. H. Kowalt, R. Goddard, C. Krüger, Angew. Chem., Int. Ed. Engl. 17, 466–467 (1978).
- 165 W. Keim, Angew. Chem., Int. Ed. Engl. 29, 235–244 (1990).
- 166 U. Klabunde, and S. D. Itten, J. Mol. Catal. 41 (1–2), 123–134 (1987).
- 167 R. Soula, J. P. Broyer, M. F. Llauro, A. Tomov, R. Spitz, J. Claverie, X. Drujon, J. Malinge, and T. Saudemont, Macromolecules 34, 2438–2442 (2001).
- 168 C. Wang, S. Friedrich, T. R. Younkin, R. T. Li, R. H. Grubbs, D. A. Bansleben, and M. W. Day, Organometallics 17, 3149–3151 (1998).
- 169 T. R. Younkin, E. F. Connor, J. I. Henderson, S. K. Friedrich, R. H. Grubbs, and D. A. Bansleben, Science 287, 460–462 (2000).
- 170 A. Tomov, J. P. Broyer, and R. Spitz, Macromol. Symp. 150 (1), 53–58 (2000).
- 171 R. Soula, C. Novat, A. Tomov, R. Spitz, J. Claverie, X. Drujon, J. Malinge, and T. Saudemont, Macromolecules 34, 2022–2026 (2001).
- 172 F. M. Bauers, M. M. Chowdhry, and S. Mecking, Macromolecules 36 (18), 6711–6715 (2003).
- 173 L. Kolb, V. Monteil, R. Thomann, and S. Mecking, Angew. Chem., Int. Ed. 44, 429–432 (2005).
- 174 P. Wehrmann and S. Mecking, Macromolecules 39, 5963–5964 (2006).
- 175 S. Mecking, Colloid Polym. Sci. 285, 605–619 (2007).
- 176 A. Held, F. M. Bauers, and S. Mecking, Chem. Commun. 4, 301–302 (2000).
- 177 F. M. Bauers and S. Mecking, Macromolecules 34 (5), 1165–1171 (2001).
- 178 E. Drent, R. van Dijk, R. van Ginkel, B. van Oort, and R. I. Pugh, Chem. Commun. 7, 744–745 (2002).
- 179 K. M. Skupov, P. R. Marella, M. Simard, G. P. A. Yap, N. Allen, D. Conner, B. L. Goodall, and J. P. Claverie, Macromol. Rapid Commun. 28 (20), 2033–2038 (2007).
- 180 K. M. Skupov, L. Piche, and J. P. Claverie, Macromolecules 41, 2309–2310 (2008).
- 181 L. K. Johnson, C. M. Killian, and M. Brookhart, J. Am. Chem. Soc. 117, 6414–6415 (1995).
- 182 C. M. Killian, D. J. Tempel, L. K. Johnson, and M. J. Brookhart, J. Am. Chem. Soc. 118, 11664–11665 (1996).
- 183 S. A. Svejda, L. K. Johnson, and M. Brookhart, J. Am. Chem. Soc. 121, 10634–10635 (1999).
- 184 D. P. Gates, S. A. Svejda, E. Oñate, C. M. Killian, L. K. Johnson, P. S. White, and M. Brookhart, Macromolecules 33, 2320–2334 (2000).
- 185 S. D. Ittel, L. K. Johnson, and M. Brookhart, Chem. Rev. 100, 1169–1204 (2000).
- 186 J. P. G. Britovsek, C. V. Gibson, J. S. McTavish, A. G. Solan, J. P. A. White, J. D. Williams, S. B. Kimberley, and J. P. Maddox, Chem. Commun. 849–850 (1998).
- 187 G. J. P. Britovsek, M. Bruce, V. C. Gibson, B. S. Kimberley, P. J. Maddox, S. Mastroianni, S. J. McTavish, C. Redshaw, G. A. Solan, S. Strömberg, A. J. P. White, and D. J. Williams, J. Am. Chem. Soc. 121, 8728–8740 (1999).
- 188 B. L. Small, M. Brookhart, and A. M. A. Bennett, J. Am. Chem. Soc. 120, 4049–4050 (1998).
- 189 E. Y. Tshuva, M. Versano, I. Goldberg, M. Kol, H. Weitman, and Z. Goldschmidt, Inorg. Chem. Commun. 2, 371–373 (1999).
- 190 E. Y. Tshuva, I. Goldberg, M. Kol, H. Weitman, and Z. Goldschmidt, Chem. Commun. 379–380 (2000).
- 191 S. Gendler, A. L. Zelikoff, J. Kopilov, I. Goldberg, and M. Kol, J. Am. Chem. Soc. 130, 2144–2145 (2008).
- 192 S. Matsui, M. Mitani, J. Saito, Y. Tohi, H. Makio, H. Tanaka, and T. Fujita, Chem. Lett. 28, 1263–1264 (1999).
- 193 H. Makio, N. Kashiwa, and T. Fujita, Adv. Synth. Catal. 344, 477–493 (2002).
- 194 Y. Nakayama, H. Bando, Y. Sonobe, H. Kaneko, N. Kashiwa, and T. Fujita, J. Catal. 215 (1), 171–175 (2003).
- 195 Y. Nakayama, M. Mitani, H. Bando, and T. Fujita, J. Synth. Org. Chem. Jpn. 61, 1124–1137 (2003).
- 196 M. Fujita, Y. Seki, and T. Miyatake, Macromol. Chem. Phys. 205, 884–887 (2004).
- 197 A. V. Prasad, H. Makio, J. Saito, M. Onda, and T. Fujita, Chem. Lett. 33, 250–251 (2004).
- 198 A. Sakuma, M. S. Weiser, and T. Fujita, Polym. J. 39 (3), 193–207 (2007).
- 199 T. Matsugi, and T. Fujita, Chem. Soc. Rev. 37, 1264–1277 (2008).
- 200 H. Makio, and T. Fujita, Acc. Chem. Res. 42, 1532–1544 (2009).
- 201 H. Makio, H. Terao, A. Iwashita, and T. Fujita, Chem. Rev. 111, 2363–2449 (2011).
- 202 T. R. Boussie, G. M. Diamond, C. Goh, K. A. Hall, A. M. LaPointe, M. Leclerc, C. Lund, V. Murphy, J. A. W. Shoemaker, U. Tracht, H. Turner, J. Zhang, T. Uno, R. K. Rosen, and J. C. Stevens, J. Am. Chem. Soc. 125, 4306–4317 (2003).
- 203 T. R. Boussie, G. M. Diamond, C. Goh, K. A. Hall, A. M. LaPointe, M. K. Leclerc, V. Murphy, J. A. W. Shoemaker, H. Turner, R. K. Rosen, J. C. Stevens, F. Alfano, V. Busico, R. Cipullo, and G. Talarico, Angew. Chem., Int. Ed. 45, 3278–3283 (2006).
- 204 C. Zuccaccia, A. Macchioni, V. Busico, R. Cipullo, G. Talarico, F. Alfano, H. W. Boone, K. A. Frazier, P. D. Hustad, J. C. Stevens, P. C. Vosejpka, and K. A. Abboud, J. Am. Chem. Soc. 130, 10354–10368 (2008).
- 205 V. C. Gibson, and S. K. Spitzmesser, Chem. Rev. 103, 283–315 (2003).
- 206 J. N. Pedeutour, K. Radhakrishnan, H. Cramail, and A. Deffieux, Macromol. Rapid Commun. 22, 1095–1123 (2001).
- 207 E. Y.-X. Chen and T. J. Marks, Chem. Rev. 100, 1391–1434 (2000).
- 208 D. W. Imhoff, L. S. Simeral, S. Z. Samngokoys, and J. H. Peel, Organometallics 17, 1941–1945 (1998).
- 209 D. W. Imhoff, L. S. Simeral, D. R. Blevins, and W. R. Beard, ACS Symp. Ser. 749, 177–191 (2000).
- 210 M. Bochmann, and L. M. Wilson, J. Chem. Soc., Chem. Commun 1610–1611 (1986).
- 211
R. F. Jordan,
Chemistry of Cationic Dicyclopentadienyl Group 4 Metal-Alkyl Complexes,
Academic Press:
San Diego, Calif.,
1991.
10.2172/6020649 Google Scholar
- 212 M. Bochmann, L. M. Wilson, M. B. Hursthouee, and M. Motevalli, Organometallics 7, 1148–1154 (1988).
- 213 M. Bochmann, A. J. Jaggar, and J. C. Nicholls, Angew. Chem., Int. Ed. Engl. 29, 780–782 (1990).
- 214 R. F. Jordan, C. S. Bajgur, R. Willett, and B. Scott, J. Am. Chem. Soc. 108, 7410–7411 (1986).
- 215 R. F. Jordan, R. E. LaPointe, C. S. Bagjur, S. F. Echols, and R. Willett, J. Am. Chem. Soc. 109, 4111–4113 (1987).
- 216 R. F. Jordan, R. E. LaPointe, P. K. Bradley, and N. C. Baenziger, Organometallics 8, 2892–2903 (1989).
- 217 G. G. Hlatky, H. W. Turner, and R. E. Eckman, J. Am. Chem. Soc. 111, 2728–2729 (1989).
- 218 A. D. Horton, and J. H. G. Frijns, Angew. Chem., Int. Ed. Engl. 30, 1152–1154 (1991).
- 219 J. J. W. Eshuis, Y. Y. Tan, A. Meetsma, and J. H. Teuben, Organometallics 11, 362–369 (1992).
- 220 EP 277004 (1988), H. W. Turner, Exxon Chemical.
- 221 US Appl. 459921 (1990), G. G. Hlatky, D. J. Upton, and H. W. Turner, Exxon Chemical.
- 222 X. Yang, C. L. Stern, and T. J. Marks, J. Am. Chem. Soc. 113, 3623–3625 (1991).
- 223 X. Yang, C. L. Stern, and T. J. Marks, J. Am. Chem. Soc. 116, 10015–10031 (1994).
- 224 P. A. Deck, and T. J. Marks, J. Am. Chem. Soc. 117, 6128–6129 (1995).
- 225 M. A. Giardello, M. S. Eisen, C. L. Stern, and T. J. Marks, J. Am. Chem. Soc. 117, 12114–12129 (1995).
- 226 L. Jia, X. Yang, A. Ishihara, and T. J. Marks, Organometallics 14, 3135–3137 (1995).
- 227 Y. X. Chen, C. L. Stern, S. Yang, and T. J. Marks, J. Am. Chem. Soc. 118, 12451–12452 (1996).
- 228 Y. X. Chen, C. L. Stern, and T. J. Marks, J. Am. Chem. Soc. 119, 2582–2583 (1997).
- 229 L. Jia, C. L. Stern, and T. J. Marks, Organometallics 16, 842–857 (1997).
- 230 Y. X. Chen, M. V. Metz, L. Li, C. L. Stern, and T. J. Marks, J. Am. Chem. Soc. 120, 6287–6305 (1998).
- 231 L. Luo, and T. J. Marks, Top. Catal. 7, 97–106 (1999).
- 232
M. V. Metz,
D. J. Schwartz,
C. L. Stern,
P. N. Nickias, and
T. J. Marks,
Angew. Chem., Int. Ed.
39,
1312–1316
(2000).
10.1002/(SICI)1521-3773(20000403)39:7<1312::AID-ANIE1312>3.0.CO;2-4 CAS PubMed Web of Science® Google Scholar
- 233 M. Bochmann and S. J. Lancaster, Organometallics 12, 633–640 (1993).
- 234 M. Bochmann, S. J. Langcaster, M. B. Hursthouse, and K. M. Abdul Malik, Organometallics 13, 2235–2243 (1994).
- 235 M. Bochmann, and S. J. Lancaster, J. Organomet. Chem. 497, 55–59 (1995).
- 236 M. Bochmann, Top. Catal. 7 (1), 9–22 (1999).
- 237 V. C. Williams, W. E. Piers, W. Clegg, S. Collins, and T. B. Marder, J. Am. Chem. Soc. 121, 3244–3245 (1999).
- 238
V. C. Williams,
C. Dai,
Z. Li,
S. Collins,
W. E. Piers,
W. Clegg,
M. R. J. Elsegood, and
T. B. Marder,
Angew. Chem., Int. Ed.
38,
3695–3698
(1999).
10.1002/(SICI)1521-3773(19991216)38:24<3695::AID-ANIE3695>3.0.CO;2-E CAS PubMed Web of Science® Google Scholar
- 239 V. C. Williams, G. J. Irvine, W. E. Piers, Z. Li, S. Collins, W. Clegg, M. R. J. Elsegood, and T. B. Marder, Organometallics 19, 1619–1621 (2000).
- 240 J. C. W. Chien, W. M. Tsai, and M. D. Rausch, J. Am. Chem. Soc. 113, 8570–8571 (1991).
- 241 J. C. W. Chien, W. Song, and M. D. Rausch, Macromolecules 26, 3239–3240 (1993).
- 242 A. R. Siedle, and R. A. Newmark, J. Organomet. Chem. 497, 119–125 (1995).
- 243
G. Kehr,
R. Frohlich,
B. Wibbeling, and
G. Erker,
Chem. Eur. J.
6,
258–266
(2000).
10.1002/(SICI)1521-3765(20000117)6:2<258::AID-CHEM258>3.0.CO;2-E CAS PubMed Web of Science® Google Scholar
- 244 B. Temme, G. Erker, J. Karl, R. Luftmann, R. Fröhlich, and S. Kotila, Angew. Chem., Int. Ed. Engl. 34, 1755–1757 (1995).
- 245 B. Temme, J. Karl, and G. Erker, Chem. Eur. J. 2, 919–924 (1996).
- 246 J. Karl, G. Erker, and R. Fröhlich, J. Am. Chem. Soc. 119, 11165–11173 (1997).
- 247 J. Karl, and G. Erker, Chem. Ber. 130, 1261–1267 (1997).
- 248 M. Dahlmann, G. Erker, M. Nissinen, and R. Fröhlich, J. Am. Chem. Soc. 121, 2820–2828 (1999).
- 249 M. Bochmann, S. J. Lancaster, and O. B. Robinson, J. Chem. Soc., Chem. Commun, 2081–2082 (1995).
- 250 X. Song, and M. Bochmann, J. Organomet. Chem. 545/546, 597–600 (1997).
- 251 Y. Sun, R. E. v. H. Spence, W. E. Piers, M. Parvez, and G. P. A. Yap, J. Am. Chem. Soc. 119, 5132–5143 (1997).
- 252 W. E. Piers, Chem. Eur. J. 4, 13–18 (1998).
- 253 W. E. Piers, Y. Sun, and L. M. Lee, Top. Catal. 7, 133–143 (1999).
- 254 Y. Sun, M. Metz, C. L. Stern, and T. J. Marks, Organometallics 19, 1625–1627 (2000).
- 255 M. C. Sacchi, E. Barsties, I. Tritto, P. Locatelli, H. H. Brintzinger, and U. Stehling, Macromolecules 30, 1267–1271 (1997).
- 256 I. Tritto, R. Donetti, M. C. Sacchi, P. Locatelli, and G. Zannoni, Macromolecules 32, 264–269 (1999).
- 257
D. E. Babushkin,
N. V. Semikolenova,
V. A. Zakharov, and
E. P. Talsi,
Macromol. Chem. Phys.
201,
558–567
(2000).
10.1002/(SICI)1521-3935(20000301)201:5<558::AID-MACP558>3.0.CO;2-N CAS Web of Science® Google Scholar
- 258 C. Gotz, A. Rau, and G. Luft, J. Mol. Catal. A: Chem. 184 (1–2), 95–110 (2002).
- 259 K. P. Bryliakov, E. P. Talsi, N. V. Semikolenova, V. A. Zakharov, J. Brand, C. Alonso-Moreno, and M. Bochmann, J. Organomet. Chem. 692 (4), 859–868 (2007).
- 260 S. M. Baldwin, J. E. Bercaw, and H. H. Brintzinger, J. Am. Chem. Soc. 130 (51), 17423–17433 (2008).
- 261 K. P. Bryliakov, E. P. Talsi, A. Z. Voskoboynikov, S. J. Lancaster, and M. Bochmann, Organometallics 27, 6333–6342 (2008).
- 262 D. E. Babushkin and H. H. Brintzinger, J. Am. Chem. Soc. 132, 452–453 (2010).
- 263 S. M. Baldwin, J. E. Bercaw, and H. H. Brintzinger, J. Am. Chem. Soc. 132, 13969–13971 (2010).
- 264 S. M. Baldwin, J. E. Bercaw, L. M. Henling, M. W. Day, and H. H. Brintzinger, J. Am. Chem. Soc. 133, 1805–1813 (2011).
- 265 M. Bochmann, and S. J. Lancaster, Angew.Chem. Int. Ed. Engl. 33, 1634–1637 (1994).
- 266 M. Bochmann, and S. J. Lancaster, J. Organomet. Chem. 497 (1–2), 55–59 (1995).
- 267 Y. X. Chen, C. L. Stern, S. Yang, and T. J. Marks, J. Am. Chem. Soc. 118, 12451–12452 (1996).
- 268 F. Song, R. D. Cannon, and M. Bochmann, J. Am. Chem. Soc. 125, 7641–7653 (2003).
- 269 V. Busico, R. Cipullo, F. Cutillo, N. Friederichs, S. Ronca, and B. Wang, J. Am. Chem. Soc. 125, 12402–12403 (2003).
- 270 C. Carlini, V. De Luise, E. Grillo Fernandes, M. Martinelli, A. M. Raspolli Galletti, and G. Sbrana, Macromol. Rapid Commun. 26, 808–812 (2005).
- 271 A. Tynys, J. L. Eilertsen, and E. Rytter, Macromol. Chem. Phys. 207, 295–303 (2006).
- 272 A. Tynys, J. L. Eilertsen, J. V. Seppala, and E. Rytter, J. Polym. Sci., Part A: Polym. Chem. 45, 1364–1376 (2007).
- 273 R. Cipullo, V. Busico, N. Fraldi, R. Pellecchia, and G. Talarico, Macromolecules 42, 3869–3872 (2009).
- 274 V. Busico, R. Cipullo, R. Pellecchia, G. Talarico, and A. Razavi, Macromolecules 42, 1789–1791 (2009).
- 275
P. Cossee,
Tetrahedron Lett.
17,
12–16
(1960).
10.1016/S0040-4039(01)99340-2 Google Scholar
- 276
P. Cossee,
Tetrahedron Lett.
17,
17–21
(1960).
10.1016/S0040-4039(01)99341-4 Google Scholar
- 277 P. Cossee, J. Catal. 3, 80–88 (1964).
- 278 E. J. Arlman, and P. Cossee, J. Catal. 3, 99–104 (1964).
- 279 M. L. H. Green, Pure Appl. Chem. 50, 27–35 (1978).
- 280 K. J. Ivin, J. J. Rooney, C. D. Stewart, M. L. H. Green, and J. R. Mahtab, J. Chem. Soc., Chem. Commun, 604–606 (1978).
- 281 Z. Dawoodi, M. L. H. Green, V. S. B. Mtetwa, and K. Prout, J. Chem. Soc., Chem. Commun, 1410–1411 (1982).
- 282 D. T. Laverty, and J. J. Rooney, J. Chem. Soc., Faraday Trans. 1 79, 869–878 (1983).
- 283 M. Brookhart, and M. L. H. Green, J. Organomet. Chem. 250, 395–408 (1983).
- 284 L. Resconi, I. Camurati, and O. Sudmeijer, Top. Catal. 7, 145–163 (1999).
- 285 W. Kaminsky, A. Ahlers, and N. Möller-Lindenhof, Angew. Chem., Int. Ed. Engl. 28, 1216–1218 (1989).
- 286 B. J. Burger, M. E. Thompson, W. D. Cotter, and J. E. Bercaw, J. Am. Chem. Soc. 112, 1566–1577 (1990).
- 287 T. Tsutsui, A. Mizuno, and N. Kashiwa, Polymer 30, 428–431 (1989).
- 288 J. J. W. Eshuis, Y. Y. Tan, J. H. Teuben, and J. Renkema, J. Mol. Catal. 62, 277–287 (1990).
- 289 L. Resconi, F. Piemontesi, G. Franciscono, G. Abis, and T. Fiorani, J. Am. Chem. Soc. 114, 1025–1032 (1992).
- 290 W. Kaminsky, and H. Lüker, Macromol. Chem., Rapid Commun. 5, 225–228 (1989).
- 291 T. Tsutsui, N. Kashiwa, and A. Mizuno, Macromol. Chem., Rapid Commun. 11, 565–570 (1990).
- 292 J. C. W. Chien and B. P. Wang, J. Polym. Sci., Part A: Polym. Chem. 28, 15–38 (1990).
- 293 A. R. Siedle and R. A. Newmark, W. M. Lamanna, and J. N. Schroepfer, Polyhedron 9, 301–308 (1990).
- 294 L. Resconi, S. Bossi, and L. Abis, Macromolecules 23, 4489–4491 (1990).
- 295 A. L. Mogstad, and R. M. Waymouth, Macromolecules 25, 2282–2284 (1992).
- 296 A. L. Mogstad, and R. M. Waymouth, Macromolecules 27, 2313–2315 (1994).
- 297 R. Leino, H. J. G. Luttikhedde, P. Lehmus, C. Willen, R. Sjoholm, A. Lehtonen, J. Seppala, and J. H. Nasman, Macromolecules 30, 3477–3483 (1997).
- 298 G. Erker and C. Fritze, Angew. Chem., Int. Ed. Engl. 31, 199–202 (1992).
- 299 L. Resconi, L. Abis, and G. Franciscono, Macromolecules 25, 6814–6817 (1992).
- 300 C. Pellecchie, and A. Zambelli, Macromol. Rapid Commun. 17, 333–338 (1996).
- 301 C. Pellecchia, A. Zambelli, L. Oliva, and D. Pappalardo, Macromolecules 29, 6990–6993 (1996).
- 302 C. Pellecchie, A. Zambelli, M. Mazzeo, and D. Pappalardo, J. Mol. Catal. A: Chem. 128, 229–237 (1998).
- 303 G. Milano, G. Guerra, C. Pellecchia, and L. Cavallo, Organometallics 19, 1343–1349 (2000).
- 304 P. Pino, P. Cioni, and J. Wei, J. Am. Chem. Soc. 109, 6189–6191 (1987).
- 305 R. Waymouth, and P. Pino, J. Am. Chem. Soc. 112, 4911–4914 (1990).
- 306 M. K. Leclerc, and H. H. Brintzinger, J. Am. Chem. Soc. 117, 1651–1652 (1995).
- 307 M. K. Leclerc, and H. H. Brintzinger, J. Am. Chem. Soc. 118, 9024–9032 (1996).
- 308 H. G. Alt, and A. Köppl, Chem. Rev. 100, 1205–1222 (2000).
- 309 WO 9527124 (1998), A. M. A. Bennett, Du Pont.
- 310 A. M. A. Bennett, CHEMTECH 29 (7), 24–28 (1999).
- 311 Z. Guan, P. M. Cotts, E. F. McCord, and S. J. McLain, Science 283, 2059–2062 (1999).
- 312 G. J. P. Britovsek, V. C. Gibson, B. S. Kimberley, P. J. Maddox, S. J. McTavish, G. A. Solan, A. J. P. White, and D. J. Williams, Chem. Commun, 849–850 (1998).
- 313 W. Kaminsky, K. Külper, and S. Niedoba, Makromol. Chem., Macromol. Symp. 3, 377–387 (1986).
- 314
H. Drögemüller,
K. Heiland, and
W. Kaminsky, in
W. Kaminsky and
H. Sinn, eds.,
Transition Metals and Organometallics as Catalysts for Olefin Polymerization,
Springer-Verlag, Berlin,
Germany,
1988,
303–308.
10.1007/978-3-642-83276-5_31 Google Scholar
- 315 K. Heiland, and W. Kaminsky, Makromol. Chem. 193, 601–610 (1992).
- 316 J. C. W. Chien, and D. He, J. Polym. Sci., Part A: Polym. Chem. 29, 1585–1593 (1991).
- 317 J. C. W. Chien, and D. He, J. Polym. Sci., Part A: Polym. Chem. 29, 1595–1601 (1991).
- 318 J. C. W. Chien and T. Nozaki, J. Polym. Sci., Part A: Polym. Chem. 31, 227–237 (1993).
- 319 T. Uozumi, and K. Soga, Makromol. Chem. 193, 823–831 (1992).
- 320 N. Herfert, P. Montag, and G. Fink, Makromol. Chem. 194, 3167–3182 (1993).
- 321 J. Koivumäki, G. Fink, and J. V. Seppälä, Macromolecules 27, 6254–6258 (1994).
- 322 J. Suhm, M. J. Schneider, and R. Mülhaupt, J. Polym. Sci., Part A: Polym. Chem. 35, 735–740 (1997).
- 323 M. J. Schneider, J. Suhm, R. Mülhaupt, M. H. Prosenc, and H. H. Brintzinger, Macromolecules 30, 3164–3168 (1997).
- 324 T. Uozumi, K. Miyazawa, T. Sano, and K. Soga, Macromol. Rapid Commun. 18, 883–889 (1997).
- 325 M. Galimberti, E. Martini, F. Piemontesi, F. Sartori, L. Resconi, and E. Albizzati, Macromol. Symp. 89, 259–275 (1995).
- 326 R. Kravchenko and R. M. Waymouth, Macromolecules 31, 1–6 (1998).
- 327
M. Arndt,
W. Kaminsky,
A. Schauwienold, and
U. Weingarten,
Macromol. Chem. Phys.
199,
1135–1152
(1998).
10.1002/(SICI)1521-3935(19980601)199:6<1135::AID-MACP1135>3.0.CO;2-J CAS Web of Science® Google Scholar
- 328
M. K. Leclerc and
R. M. Waymouth,
Angew. Chem., Int. Ed.
37,
922–925
(1998).
10.1002/(SICI)1521-3773(19980420)37:7<922::AID-ANIE922>3.0.CO;2-G PubMed Web of Science® Google Scholar
- 329 G. Xu, Macromolecules 31, 2395–2402 (1998).
- 330 T. D. Shaffer, J. A. M. Canich, and K. R. Squire, Macromolecules 31, 5145–5147 (1998).
- 331 J. F. Vega, A. Muñoz-Escalona, xA. Muñoz-Escalona, M. E. Muñoz, and P. Lafuente, Macromolecules 29, 960–965 (1996).
- 332 A. Malmberg, E. Kokko, P. Lehmus, B. Löfgren, and J. V. S. Seppälä, Macromolecules 31, 8448–8454 (1998).
- 333 E. Kokko, A. Malmberg, P. Lehmus, B. Lofgren, and J. Seppala, J. Polym. Sci., Part A: Polym. Chem. 38, 376–388 (2000).
- 334 G. W. Coates, Chem. Rev. 100, 1223–1252 (2000).
- 335 L. Resconi, L. Cavallo, A. Fait, and F. Piemontesi, Chem. Rev. 100, 1253–1346 (2000).
- 336 L. Resconi, F. Piemontesi, M. Colonnesi, H. Rychlicki, and R. Zeigler, Macromolecules 28, 6667–6676 (1995).
- 337 L. Resconi, J. Mol. Catal. A: Chem. 146, 167–178 (1999).
- 338 V. Busico, and R. Cipullo, J. Am. Chem. Soc. 116, 9329–9330 (1994).
- 339 V. Busico, R. Cipullo, J. C. Chadwick, J. F. Modder, and O. Sudmeijer, Macromolecules 27, 7538–7543 (1994).
- 340 V. Busico, and R. Cipullo, J. Organomet. Chem. 497, 113–118 (1995).
- 341 V. Busico, L. Caporaso, R. Cipullo, L. Landriani, G. Angelini, A. Margonelli, and A. L. Segre, J. Am. Chem. Soc. 118, 2105–2106 (1996).
- 342 V. Busico, D. Brita, L. Caporaso, R. Cipullo, and M. Vacatello, Macromolecules 30, 3971–3977 (1997).
- 343 V. Busico, R. Cipullo, L. Caporaso, G. Angelini, and A. L. Segre, J. Mol. Catal. A: Chem. 128, 53–64 (1998).
- 344 L. Resconi, D. Balboni, G. Baruzzi, C. Fiori, G. Guidotti, P. Mercandelli, and A. Sironi, Organometallics 19, 420–429 (2000).
- 345 T. Mise, S. Miya, and H. Yamazaki, Chem. Lett, 18, 1853–1856 (1989).
- 346 S. Collins, W. J. Gauthier, D. A Holden, B. A. Kuntz, N. J. Taylor, and D. G. Ward, Organometallics 10, 2061–2068 (1991).
- 347 M. A. Giardello, M. S. Eisen, S. L. Stern, and T. J. Marks, J. Am. Chem. Soc. 115, 3326–3327 (1993).
- 348 Y. Obora, C. L. Stern, T. J. Marks, and P. N. Nickias, Organometallics 16, 2503–2505 (1997).
- 349 S. Miyake, Y. Okumura, and S. Inazawa, Macromolecules 28, 3074–3079 (1995).
- 350 H. Deng, H. Winkelbach, K. Taeji, W. Karninsky, and K. Soga, Macromolecules 29, 6371–6376 (1996).
- 351 W. Spaleck, M. Aulbach, B. Bachmann, F. Küber, and A. Winter, Macromol. Symp. 89, 237–247 (1995).
- 352 A. Razavi, L. Peters, L. Nafpliotis, D. Vereecke, K. Den Dauw, J. L. Atwood, and U. Thewald, Macromol. Symp. 89, 345–367 (1995).
- 353 G. Erker, M. Aulbach, M. Knickmeier, D. Wingbermühle, C. Krüger, M. Nolte, and S. Werner, J. Am. Chem. Soc. 115, 4590–4601 (1993).
- 354 G. Erker, M. Aulbach, C. Krüger, and S. Werner, J. Organomet. Chem. 450, 1–7 (1993).
- 355 M. Knickmeier, G. Erker, and T. Fox, J. Am. Chem. Soc. 118, 9623–9630 (1996).
- 356 A. Razavi and J. L. Atwood, J. Am. Chem. Soc. 115, 7529–7530 (1993).
- 357 G. Erker, S. Wilker, C. Krüger, and R. Goddard, J. Am. Chem. Soc. 114, 10983–10984 (1992).
- 358 G. Erker, C. Psiorz, C. Krüger, and M. Nolte, Chem. Ber. 127, 1551–1553 (1994).
- 359 B. Rieger, X. Mu, D. T. Mallin, M. D. Rausch, J. C. W. Chien, Macromolecules 23, 3559–3568 (1990).
- 360 R. Fierro, J. C. W. Chien, and M. D. Rausch, J. Polym. Sci., Part A: Polym. Chem. 32, 2817–2824 (1994).
- 361 M. L. H. Green, and N. Ishihara, J. Chem. Soc., Dalton Trans, 657–665 (1994).
- 362 B. Rieger, Polym. Bull. 32, 41–46 (1994).
- 363 W. Spaleck, F. Küber, B. Bachmann, C. Fritze, and A. Winter, J. Mol. Catal. A: Chem. 128, 279–287 (1998).
- 364 D. T. Mallin, M. D. Rausch, Y. G. Lin, S. Dong, and J. C. W. Chien, J. Am. Chem. Soc. 112, 2030–2031 (1990).
- 365 J. C. W. Chien, G. H. Llinas, M. D. Rauech, G. Y. Lin, and H. H. Winter, J. Am. Chem. Soc. 113, 8569–8570 (1991).
- 366 G. H. Llinas, S. H. Dong, D. T. Mallin, M. D. Rausch, Y. G. Lin, H. H. Winter, and J. C. W. Chien, Macromolecules 25, 1242–1253 (1992).
- 367 J. C. W. Chien, G. N. Babu, R. A. Newmark, H. H. Cheng, and G. H. Llinas, J. Polym. Sci., Part A: Polym. Chem. 30, 2601–2617 (1992).
- 368 G. H. Llinas, R. O. Day, M. D. Rausch, and J. C. W. Chien, Organometallics 12, 1283–1288 (1993).
- 369 W. J. Gauthier, J. E. Corrigan, N. J. Taylor, and S. Collins, Macromolecules 28, 3771–3778 (1995).
- 370 W. J. Gauthiuer and S. Collins, Macromolecules 28, 3779–3786 (1995).
- 371 A. M. Bravakis, L. E. Bailey, M. Pigeon, and S. Collins, Macromolecules 31, 1000–1009 (1998).
- 372 R. Kravchenko, A. Masood, and R. M. Waymouth, Organometallics 16, 3635–3639 (1997).
- 373
J. L. Maciejewski-Petoff,
M. D. Bruce,
R. M. Waymouth,
A. Masood,
T. K. Lal,
R. W. Quan, and
S. J. Behrend,
Organometallics
16,
5909–5916
(1997).
10.1021/om9706119 Google Scholar
- 374 M. D. Bruce, G. W. Coates, E. Hauptman, R. M. Waymouth, and J. W. Ziller, J. Am. Chem. Soc. 119, 11174–11182 (1997).
- 375 S. Lin, E. Hauptman, T. K. Lal, R. M. Waymouth, R. W. Quan, and A. B. Ernst, J. Mol. Catal. A: Chem. 136, 23–33 (1998).
- 376 R. Kravchenko, A. Masood, R. M. Waymouth, and C. L. Myers, J. Am. Chem. Soc. 120, 2039–2046 (1998).
- 377 P. Witte, T. K. Lal, and R. M. Waymouth, Organometallics 18, 4147–4155 (1999).
- 378 S. Jüngling, R. Mülhaupt, U. Stehling, H. H. Brintzinger, D. Fischer, and F. Langhauser, J. Polym. Sci., Part A: Polym. Chem. 33, 1305–1317 (1995).
- 379 S. Jüngling, S. Koltzenburg, and R. Mülhaupt, J. Polym. Sci., Part A: Polym. Chem. 35, 1–8 (1997).
- 380 J. A. Bandy, M. L. H. Green, I. M. Gardiner, and K. Prout, J. Chem. Soc., Dalton Trans, 2207–2216 (1991).
- 381 T. K. Han, B. W. Woo, J. T. Park, Y. Do, Y. S. Ko, and S. I. Woo, Macromolecules 28, 4801–4805 (1995).
- 382 J. Saito, M. Onda, S. Matsui, M. Mitani, R. Furuyama, H. Tanaka, and T. Fujita, Macromol. Rapid Commun. 23 (18), 1118–1123 (2002).
- 383 A. F. Mason and G. W. Coates, J. Am. Chem. Soc. 126 (50), 16326–16327 (2004).
- 384 J. B. Edson, Z. Wang, E. J. Kramer, and G. W. Coates, J. Am. Chem. Soc. 130 (14), 4968–4977 (2008).
- 385 M. Mazzeo, M. Strianese, M. Lamberti, I. Santoriello, and C. Pellecchia, Macromolecules 39, 7812–7820 (2006).
- 386 E. Y. Tshuva, I. Goldberg, and M. Kol, J. Am. Chem. Soc. 122, 10706–10707 (2000).
- 387 V. Busico, R. Cipullo, N. Friederichs, S. Ronca, G. Talarico, M. Togrou, and B. Wang, Macromolecules 37, 8201–8203 (2004).
- 388 T. R. Boussie, G. M. Diamond, C. Goh, K. A. Hall, A. M. LaPointe, M. Leclerc, C. Lund, V. Murphy, J. A. W. Shoemaker, U. Tracht, H. Turner, J. Zhang, T. Uno, R. K. Rosen, and J. C. Stevens, J. Am. Chem. Soc. 125, 4306–4317 (2003).
- 389 V. Busico, R. Pellecchia, F. Cutillo, and R. Cipullo, Macromol. Rapid Commun. 30, 1697–1708 (2009).
- 390 G. J. Domski, E. B. Lobkovsky, and G. W. Coates, Macromolecules 40, 3510–3513 (2007).
- 391 L. R. Sita, Angew. Chem., Int. Ed. 48, 2464–2472 (2009).
- 392 M. B. Harney, Y. Zhang, and L. R. Sita, Angew. Chem., Int. Ed. 45 (37), 6140–6144 (2006).
- 393 G. Natta, I. Pasquon, and A. Zambelli, J. Am. Chem. Soc. 84, 1488–1490 (1962).
- 394 J. A. Ewen, M. J. Elder, R. Jones, S. Curtis, and H. N. Cheng, Stud. Surf. Sci. Catal. 56, 439–482 (1990).
- 395 F. Grisi, P. Longo, A. Zambelli, and J. A. Ewen, J. Mol. Catal. A: Chem. 140, 225–233 (1999).
- 396 B. Rieger, T. Repo, and G. Jany, Polym. Bull. 35, 87–94 (1995).
- 397 K. Patsidis, H. G. Alt, W. Milius, and S. J. Palackal, J. Organomet. Chem. 509 (1), 63–71 (1996).
- 398 H. G. Alt, R. Zenk, and W. Milius, J. Organomet. Chem. 514, 257–270 (1996).
- 399 H. G. Alt, and R. Zenk, J. Organomet. Chem. 518, 7–15 (1996).
- 400 H. G. Alt, and R. Zenk, J. Organomet. Chem. 522, 39–54 (1996).
- 401 H. G. Alt, and E. Samuel, Chem. Soc. Rev. 27, 323–329 (1998).
- 402 M. H. Lee, J. W. Park, C. S. Hong, S. I. Woo, and Y. Do, J. Organomet. Chem. 561, 37–47 (1998).
- 403 T. A. Herzog, D. L. Zubris, and J. E. Bercaw, J. Am. Chem. Soc. 118, 11988–11989 (1996).
- 404 S. Miyake, and J. E. Bercaw, J. Mol. Catal. A: Chem. 128, 29–39 (1998).
- 405 S. A. Miller, and J. E. Bercaw, Organometallics 23, 1777–1789 (2004).
- 406 S. A. Miller, Ph.D. thesis, California Institute of Technology, Pasadena, Calif., 2000.
- 407 G. Talarico, V. Busico, L. Cavallo, J. Am. Chem. Soc. 125, 7172–7173 (2003).
- 408 G. Milano, L. Cavallo, and G. Guerra, J. Am. Chem. Soc. 124, 13368–13369 (2002).
- 409 J. Tian, P. D. Hustad, and G. W. Coates, J. Am. Chem. Soc. 123, 5134–5135 (2001).
- 410 M. Mitani, R. Furuyama, J.-i. Mohri, J. Saito, S. Ishii, H. Terao, N. Kashiwa, and T. Fujita, J. Am. Chem. Soc. 124, 7888–7889 (2002).
- 411 G. Natta, J. Polym. Sci. 34, 531–549 (1959).
- 412 J. W. Collette, C. W. Tullock, R. N. MacDonald, W. H. Buck, A. C. L. Su, J. R. Harrel, R. Mulhaupt, and B. C. Anderson, Macromolecules 22, 3851–3858 (1989).
- 413 J. W. Collette, D. W. Ovenall, W. H. Buck, and R. C. Ferguson, Macromolecules 22, 3858–3866 (1989).
- 414 L. S. Boffa and B. M. Novak, Chem. Rev. 100, 1479–1494 (2000).
- 415 A. Nakamura, S. Ito, and K. Nozaki, Chem. Rev. 109 (11), 5215–5244 (2009).
- 416 E. Y. X. Chen, Chem. Rev. 109, 5157–5214 (2009).
- 417 M. R. Kesti, G. W. Coates, and R. M. Waymouth, J. Am. Chem. Soc. 114, 9679–9680 (1992).
- 418 U. M. Stehling, K. M. Stein, and R. M. Waymouth, Macromolecules 31, 2019–2027 (1998).
- 419 U. M. Stehling, K. M. Stein, D. Fisher, and R. M. Waymouth, Macromolecules 32, 14–20 (1999).
- 420 M. Fernandes and W. Kaminsky, Macromol. Chem. Phys. 210, 585 (2009).
- 421 M. J. Schneider, R. Schäfer, and R. Mülhaupt, Polymer 38, 2455–2459 (1997).
- 422
R. Goretzki and
G. Fink,
Macromol. Rapid Commun.
19,
511–515
(1998).
10.1002/(SICI)1521-3927(19981001)19:10<511::AID-MARC511>3.0.CO;2-1 CAS Web of Science® Google Scholar
- 423
M. M. Marques,
S. G. Correia,
J. R. Ascenso,
A. F. G. Ribeiro,
P. T. Gomes,
A. R. Dias,
P. Foster,
M. D. Rausch, and
J. C. W. Chien,
J. Polym. Sci., Part A: Polym. Chem.
37,
2457–2469
(1999).
10.1002/(SICI)1099-0518(19990715)37:14<2457::AID-POLA20>3.0.CO;2-Y CAS Web of Science® Google Scholar
- 424 S. Bruzaud, H. Cramail, L. Duvignac, and A. Deffieux, Macromol. Chem. Phys. 198, 291–303 (1997).
- 425 P. Aaltonen, and B. Löfgren, Macromolecules 28, 5353–5357 (1995).
- 426 P. Aaltonen, G. Fink, B. Löfgren, and J. Seppala, Macromolecules 29, 5255–5260 (1996).
- 427 C.-E. Wilén and J. H. Näsman, Macromolecules 27, 4051–4057 (1994).
- 428 J. Okuda and I. L. Rushkin, Macromolecules 26, 5530–5532 (1993).
- 429 M. Hayakawa, M. Mitani, T. Yamada, and T. Mukaiyama, Macromol. Chem. Phys. 198, 1305–1317 (1997).
- 430 M. Hayakawa, M. Mitani, T. Yamada, and T. Mukaiyama, Macromol. Rapid Commun. 17, 865–870 (1996).
- 431 H. Yasuda, H. Yamamoto, K. Yokota, S. Miyake, and A. Nakamura, J. Am. Chem. Soc. 114, 4908–4910 (1992).
- 432 D. G. Ward and S. Collins, J. Am. Chem. Soc. 114, 5460–5462 (1992).
- 433 Y. Li, D. G. Ward, S. S. Reddy, and S. Collins, Macromolecules 30, 1875–1883 (1997).
- 434 H. Nguyen, A. P. Jarvis, M. J. G. Lesley, W. M. Kelly, S. S. Reddy, N. J. Taylor, and S. Collins, Macromolecules 33, 1508–1510 (2000).
- 435 M. A. Giardello, Y. Yamamoto, L. Brard, and T. J. Marks, J. Am. Chem. Soc. 117, 3276–3277 (1995).
- 436 K. Soga, H. Deng, T. Yano, and T. Shiono, Macromolecules 27, 7938–7940 (1994).
- 437 H. Deng, T. Shiono, and K. Soga, Macromolecules 28, 3067–3073 (1995).
- 438 H. Deng and K. Soga, Macromolecules 29, 1847–1848 (1996).
- 439 L. S. Boffa and B. M. Novak, Macromolecules 27, 6993–6995 (1994).
- 440 L. S. Boffa and B. M. Novak, Macromolecules 30, 3494–3506 (1997).
- 441 M. Cheng, A. B. Attygale, E. B. Lobkovsky, and G. W. Coates, J. Am. Chem. Soc. 121, 11583–11584 (1999).
- 442 H. Terao, S. Ishii, M. Mitani, H. Tanaka, and T. Fujita, J. Am. Chem. Soc. 130, 17636–17637 (2008).
- 443 B. Goodall, in Z. Guan, ed., Metal Catalysts in Olefin Polymerization, Springer Berlin, Germany, 2009, Vol. 26, pp. 159–178.
- 444 M. Brookhart and B. L. Small, in Book of Abstracts of 9th IUPAC Symposium on Organometallic Chemistry Directed Towards Organic Synthesis, Göttingen, Germany, July 20–25, 1997. 447, 1997.
- 445 B. L. Small, M. Brookhart, and A. M. A. Bennett, J. Am. Chem. Soc. 120, 4049–4050 (1998).
- 446
S. G. Correia,
M. M. Marques,
J. R. Ascenso,
A. F. G. Ribeiro,
P. T. Gomes,
A. R. Dias,
M. Blais,
M. D. Rausch, and
J. C. W. Chien,
J. Polym. Sci., Part A: Polym. Chem.
37,
2471–2480
(1999).
10.1002/(SICI)1099-0518(19990715)37:14<2471::AID-POLA21>3.0.CO;2-A CAS Web of Science® Google Scholar
- 447 C. Carlini, M. Martinelli, A. M. Raspolli Galletti, and G. Sbrana, Macromol. Chem. Phys. 203 (10–11), 1606–1613 (2002).
- 448 A. Leblanc, E. Grau, J. P. Broyer, C. Boisson, R. Spitz, and V. Monteil, Macromolecules 44, 3293–3301 (2011).
- 449 C. S. Popeney, D. H. Camacho, and Z. Guan, J. Am. Chem. Soc. 129 (33), 10062–10063 (2007).
- 450 C. S. Popeney and Z. Guan, J. Am. Chem. Soc. 131, 12384–12393 (2009).
- 451 V. A. Kryuchkov, J. C. Daigle, K. M. Skupov, J. P. Claverie, and F. o. M. Winnik, J. Am. Chem. Soc. 132, 15573–15579 (2010).
- 452 J. C. Daigle, L. Piche, and J. P. Claverie, Macromolecules 44, 1760–1762 (2011).
- 453 B. A. Rodriguez, M. Delferro, and T. J. Marks, J. Am. Chem. Soc. 131, 5902–5919 (2009).
- 454 E. J. Markel, W. Weng, A. J. Peacock, and A. H. Dekmezian, Macromolecules 33, 8541–8548 (2000).
- 455 G. W. Coates, P. D. Hustad, and S. Reinartz, Angew. Chem., Int. Ed. 41, 2236–2257 (2002).
- 456 G. Jeske, H. Lauke, H. Mauermann, P. N. Swepston, H. Schumann, and T. J. Marks, J. Am. Chem. Soc. 107 (26), 8091–103 (1985).
- 457 H. Yasuda, M. Furo, H. Yamamoto, A. Nakamura, S. Miyake, and N. Kibino, Macromolecules 25 (19), 5115–5116 (1992).
- 458 J. D. Scollard and D. H. McConville, J. Am. Chem. Soc. 118, 10008–10009 (1996).
- 459 S. Matsui, M. Mitani, J. Saito, Y. Tohi, H. Makio, H. Tanaka, and T. Fujita, Chem. Lett. 28, 1263–1264 (1999).
- 460 S. Matsui, Y. Tohi, M. Mitani, J. Saito, H. Makio, H. Tanaka, M. Nitabaru, T. Nakano, and T. Fujita, Chem. Lett. 28, 1065–1066 (1999).
- 461 J. Saito, M. Mitani, J.-I. Mohri, S.-I. Ishii, Y. Yoshida, T. Matsugi, S.-I. Kojoh, N. Kashiwa, T. Fujita, Chem. Lett. 30, 576–577 (2001).
- 462
J. Saito,
M. Mitani,
J.-I. Mohri,
Y. Yoshida,
S. Matsui,
S.-I. Ishii,
S.-I. Kojoh,
N. Kashiwa, and
T. Fujita,
Angew. Chem., Int. Ed.
40,
2918–2920
(2001).
10.1002/1521-3773(20010803)40:15<2918::AID-ANIE2918>3.0.CO;2-S CAS PubMed Web of Science® Google Scholar
- 463
S.-I. Kojoh,
T. Matsugi,
J. Saito,
M. Mitani,
T. Fujita, and
N. Kashiwa,
Chem. Lett.
31,
822–823
(2001).
10.1246/cl.2001.822 Google Scholar
- 464 E. Y. Tshuva, I. Goldberg, M. Kol, and Z. Goldschmidt, Chem. Commun. 2120–2121 (2001).
- 465 E. Y. Tshuva, S. Groysman, I. Goldberg, M. Kol, and Z. Goldschmidt, Organometallics 21, 662–670 (2002).
- 466 A. Cohen, J. Kopilov, M. Lamberti, V. Venditto, and M. Kol, Macromolecules 43, 1689–1691 (2010).
- 467 V. Busico, R. Cipullo, N. Friederichs, S. Ronca, G. Talarico, M. Togrou, and B. Wang, Macromolecules 37, 8201–8203 (2004).
- 468 K. C. Jayaratne and L. R. Sita, J. Am. Chem. Soc. 122, 958–959 (2000).
- 469 R. J. Keaton, K. C. Jayaratne, D. A. Henningsen, L. A. Koterwas, and L. R. Sita, J. Am. Chem. Soc. 123, 6197–6198 (2001).
- 470 Y. Zhang, R. J. Keaton, and L. R. Sita, J. Am. Chem. Soc. 125, 9062–9069 (2003).
- 471 L. R. Sita, Angew. Chem., Int. Ed. 48, 2464–2472 (2009).
- 472 M. B. Harney, Y. Zhang, and L. R. Sita, Angew. Chem., Int. Ed. 45, 2400–2404 (2006).
- 473 C. Giller, G. Gururajan, J. Wei, W. Zhang, W. Hwang, D. B. Chase, J. F. Rabolt, and L. R. Sita, Macromolecules 44, 471–482 (2011).
- 474 V. C. Gibson, Science 312, 703–704 (2006).
- 475 D'F. Agosto and C. Boisson, Aust. J. Chem. 63, 1155–1158 (2010).
- 476 R. Kempe, Chem. Eur. J. 13, 2764–2773 (2007).
- 477 J.-F. Pelletier, A. Mortreux, X. Olonde, and K. Bujadoux, Angew. Chem., Int. Ed. Engl. 35, 1854–1856 (1996).
- 478
G. J. P. Britovsek,
S. A. Cohen,
V. C. Gibson,
P. J. Maddox,
M. van Meurs,
Angew. Chem. Int. Ed. Engl.
41,
489–491
(2002).
10.1002/1521-3773(20020201)41:3<489::AID-ANIE489>3.0.CO;2-C CAS PubMed Web of Science® Google Scholar
- 479 G. J. P. Britovsek, S. A. Cohen, V. C. Gibson, M. van Meurs, J. Am. Chem. Soc. 126, 10701–10712 (2004).
- 480 M. van Meurs, G. J. P. Britovsek, V. C. Gibson, and S. A. Cohen, J. Am. Chem. Soc. 127, 9913–9923 (2005).
- 481 J. S. Rogers and G. C. Bazan, Chem. Commun. 1209–1210 (2000).
- 482 G. C. Bazan, J. S. Rogers, and C. C. Fang, Organometallics 20, 2059–2064 (2001).
- 483 M. Ganesan and F. P. Gabbai, Angew. Chem., Int. Ed. 43, 2263–2266 (2004).
- 484 M. Ganesan, and F. P. Gabbaï, Organometallics 23, 4608–4613 (2004).
- 485 W. Zhang, J. Wei, and L. R. Sita, Macromolecules 41, 7829–7833 (2008).
- 486 W. P. Kretschmer, A. Meetsma, B. Hessen, T. Schmalz, S. Qayyum, and R. Kempe, Chem. Eur. J. 12, 8969–8978 (2006).
- 487 F. Alfano, H. W. Boone, V. Busico, R. Cipullo, and J. C. Stevens, Macromolecules 40, 7736–7738 (2007).
- 488 W. Zhang and L. R. Sita, J. Am. Chem. Soc. 130, 442–443 (2008).
- 489 J. Wei, W. Zhang, R. Wickham, and L. R. Sita, Angew. Chem., Int. Ed. 49, 9140–9144 (2010).
- 490 C. J. Han, M. S. Lee, D.-J. Byun, and S. Y. Kim, Macromolecules 35, 8923–8925 (2002).
- 491 H. Kaneyoshi, Y. Inoue, and K. Matyjaszewski, Macromolecules 38, 5425–5435 (2005).
- 492 J. Mazzolini, I. Mokthari, R. Briquel, O. Boyron, F. Delolme, V. Monteil, D. Bertin, D. Gigmes, F. D'Agosto, and C. Boisson, Macromolecules 43, 7495–7503 (2010).
- 493 R. Briquel, J. Mazzolini, T. Le Bris, O. Boyron, F. Boisson, F. Delolme, F. D'Agosto, C. Boisson, and R. Spitz, Angew. Chem., Int. Ed. 47, 9311–9313 (2008).
- 494 J. Wei, R. Wickham, and L. R. Sita, Polym. Prepr. 51, 370–371 (2010).
- 495 T. Li, W. J. Wang, R. Liu, W. H. Liang, G. F. Zhao, Z. Li, Q. Wu, and F. M. Zhu, Macromolecules 42, 3804–3810 (2009).
- 496 R. G. Lopez, C. Boisson, F. D'Agosto, R. Spitz, F. Boisson, D. Gigmes, and D. Bertin, Macromol. Rapid Commun. 27, 173–181 (2006).
- 497 D. J. Arriola, E. M. Carnahan, P. D. Hustad, R. L. Kuhlman, and T. T. Wenzel, Science 312, 714–719 (2006).
- 498 P. D. Hustad, R. L. Kuhlman, D. J. Arriola, E. M. Carnahan, and T. T. Wenzel, Macromolecules 40, 7061–7064 (2007).
- 499 P. D. Hustad, G. R. Marchand, E. I. Garcia-Meitin, P. L. Roberts, and J. D. Weinhold, Macromolecules 42, 3788–3794 (2009).
- 500 M. R. Ribeiro, A. Deffieux, and M. F. Portela, Ind. Eng. Chem. Res. 36, 1224–1237 (1997).
- 501 C. Jenny and P. Maddox, Curr. Opin. Solid State Mater. Sci. 3, 94–103 (1998).
- 502
H. C. L. Abbenhuis,
Angew. Chem., Int. Ed.
38,
1058–1060
(1999).
10.1002/(SICI)1521-3773(19990419)38:8<1058::AID-ANIE1058>3.0.CO;2-8 CAS PubMed Web of Science® Google Scholar
- 503 J. C. W. Chien, Top. Catal. 7, 23–26 (1999).
- 504 W. Kaminsky and H. Winkelbach, Top. Catal. 7, 61–67 (1999).
- 505 M. O. Kristen, Top. Catal. 7, 89–95 (1999).
- 506 G. G. Hlatky, Chem. Rev. 100, 1347–1376 (2000).
- 507 G. Fink, B. Steinmetz, J. Zechlin, C. Przybyla, and B. Tesche, Chem. Rev. 100, 1377–1390 (2000).
- 508 J. R. Severn, J. C. Chadwick, R. Duchateau, and N. Friederichs, Chem. Rev. 105 (11), 4073–4147 (2005).
- 509
J. R. Severn, in
J. R. Severn and
J. C. Chadwick, eds.,
Tailor-Made Polymers,
Wiley-VCH Verlag GmbH & Co. KgaA,
Weinheim, Germany,
2008, pp.
95–138.
10.1002/9783527621668.ch4 Google Scholar
- 510
G. G. Hlatky and
M. W. Lynch, in
J. R. Severn and
J. C. Chadwick, eds.,
Tailor-Made Polymers,
Wiley-VCH Verlag GmbH & Co. KGaA,
Weinheim, Germany,
2008, pp.
139–150.
10.1002/9783527621668.ch5 Google Scholar
- 511
J. C. Chadwick, in
J. R. Severn and
J. C. Chadwick, eds.,
Tailor-Made Polymers,
Wiley-VCH Verlag GmbH & Co. KGaA,
Weinheim, Germany,
2008, pp.
151–169.
10.1002/9783527621668.ch6 Google Scholar
- 512
M. P. McDaniel,
M. D. Jensen,
K. Jayaratne,
K. S. Collins,
E. A. Benham,
N. D. McDaniel,
P. K. Das,
J. L. Martin,
Q. Yang,
M. G. Thorn, and
A. P. Masino, in
J. R. Severn and
J. C. Chadwick, eds.,
Tailor-Made Polymers,
Wiley-VCH Verlag GmbH & Co. KGaA,
Weinheim, Germany,
2008, pp.
171–210.
10.1002/9783527621668.ch7 Google Scholar
- 513 J. C. Hicks and C. W. Jones, Tethering in J. R. Severn and J. C. Chadwick, eds., Tailor-Made Polymers Via Immobilization of Alpha-Olefin Polymerization Catalysts, Wiley-VCH Verlag GmbH & Co. KGaA, Weinheim, Germany, 2008, pp. 239–260.
- 514 B. Heurtefeu, C. Bouilhac, É. Cloutet, D. Taton, A. Deffieux, and H. Cramail, Prog. Polym. Sci. 36 (1), 89–126 (2011).
- 515 M. Klapper and G. Fink, in J. R. Severn and J. C. Chadwick, eds., Tailor-Made Polymers Via Immobilization of Alpha-Olefin Polymerization Catalysts, Wiley-VCH Verlag GmbH & Co. KGaA, Weinheim, Germany, 2008, pp. 277–303.
- 516 H. G. Alt and C. Görl. in J. R. Severn and J. C. Chadwick, eds., Tailor-Made Polymers Via Immobilization of Alpha-Olefin Polymerization Catalysts, Wiley-VCH Verlag GmbH & Co. KGaA, Weinheim, Germany, 2008, pp. 305–326.