Continuously Synthesis and Performance of Cathode Material LiNi1/3Co1/3Mn1/3O2 for Lithium Ion Batteries
Mengbi Fu
State Key Laboratory Breeding Base of Complex Nonferrous Metal Resources Cleaning, Utilization in Yunnan Province
Key Laboratory of Unconventional Metallurgy for Education, Ministry
Faculty of Metallurgy and Energy Engineering, Kunming University of Science and Technology
Search for more papers by this authorLibo Zhang
State Key Laboratory Breeding Base of Complex Nonferrous Metal Resources Cleaning, Utilization in Yunnan Province
Key Laboratory of Unconventional Metallurgy for Education, Ministry
Faculty of Metallurgy and Energy Engineering, Kunming University of Science and Technology
Search for more papers by this authorZhengfu Zhang
State Key Laboratory Breeding Base of Complex Nonferrous Metal Resources Cleaning, Utilization in Yunnan Province
Key Laboratory of Unconventional Metallurgy for Education, Ministry
Faculty of Materials Science and Engineering, Kunming 650093, China
Search for more papers by this authorJinhui Peng
State Key Laboratory Breeding Base of Complex Nonferrous Metal Resources Cleaning, Utilization in Yunnan Province
Key Laboratory of Unconventional Metallurgy for Education, Ministry
Faculty of Metallurgy and Energy Engineering, Kunming University of Science and Technology
Search for more papers by this authorYamei Han
State Key Laboratory Breeding Base of Complex Nonferrous Metal Resources Cleaning, Utilization in Yunnan Province
Key Laboratory of Unconventional Metallurgy for Education, Ministry
Faculty of Materials Science and Engineering, Kunming 650093, China
Search for more papers by this authorJiang Du
State Key Laboratory Breeding Base of Complex Nonferrous Metal Resources Cleaning, Utilization in Yunnan Province
Key Laboratory of Unconventional Metallurgy for Education, Ministry
Faculty of Materials Science and Engineering, Kunming 650093, China
Search for more papers by this authorMengbi Fu
State Key Laboratory Breeding Base of Complex Nonferrous Metal Resources Cleaning, Utilization in Yunnan Province
Key Laboratory of Unconventional Metallurgy for Education, Ministry
Faculty of Metallurgy and Energy Engineering, Kunming University of Science and Technology
Search for more papers by this authorLibo Zhang
State Key Laboratory Breeding Base of Complex Nonferrous Metal Resources Cleaning, Utilization in Yunnan Province
Key Laboratory of Unconventional Metallurgy for Education, Ministry
Faculty of Metallurgy and Energy Engineering, Kunming University of Science and Technology
Search for more papers by this authorZhengfu Zhang
State Key Laboratory Breeding Base of Complex Nonferrous Metal Resources Cleaning, Utilization in Yunnan Province
Key Laboratory of Unconventional Metallurgy for Education, Ministry
Faculty of Materials Science and Engineering, Kunming 650093, China
Search for more papers by this authorJinhui Peng
State Key Laboratory Breeding Base of Complex Nonferrous Metal Resources Cleaning, Utilization in Yunnan Province
Key Laboratory of Unconventional Metallurgy for Education, Ministry
Faculty of Metallurgy and Energy Engineering, Kunming University of Science and Technology
Search for more papers by this authorYamei Han
State Key Laboratory Breeding Base of Complex Nonferrous Metal Resources Cleaning, Utilization in Yunnan Province
Key Laboratory of Unconventional Metallurgy for Education, Ministry
Faculty of Materials Science and Engineering, Kunming 650093, China
Search for more papers by this authorJiang Du
State Key Laboratory Breeding Base of Complex Nonferrous Metal Resources Cleaning, Utilization in Yunnan Province
Key Laboratory of Unconventional Metallurgy for Education, Ministry
Faculty of Materials Science and Engineering, Kunming 650093, China
Search for more papers by this authorJiann-Yang Hwang
Search for more papers by this authorPhillip J. Mackey
Search for more papers by this authorOnuralp Yucel
Search for more papers by this authorGuifeng Zhou
Search for more papers by this authorSummary
This chapter contains sections titled:
-
Introduction
-
Experiment
-
Results and Discussion
-
Conclusions
References
- JIE X, Chernova N A, Whittingham M S. Influence of Manganese Content on the Performance of LiNi0.9-yMnyCo0.1O2(0.45≤y≤0.60) as a Cathode Material for Li-Ion Batteries[J]. Chemistry of Materials, 2010, 22: 1180–1185.
- DENG C, ZHANG S, WU B, Yang S Y, Li H Q. Synthesis and characteristics of nanostructured Li(Co1/3Ni1/3Mn1/3)O2 cathode material prepared at 0 °C[J]. J Solid State Electrochem, 2010, ( 14): 871–875.
- OHZUKU T, MAKIMURA Y. Layered lithium insertion material of LiCo1/3Ni1/3Mn1/3O2 for lithium-ion batteries[J]. Chemistry Letters, 2001, 7: 642–643.
10.1246/cl.2001.642 Google Scholar
- Zeng Y W. Investigation of LiNi1/3Co1/3Mn1/3O2 cathode particles after 300 discharge/charge cycling in a lithium-ion battery by analytical TEM[J]. Journal of Power Sources, 2008, 183(1): 316–324.
- Lu C H, Shen B J. Electrochemical characteristics of LiNi1/3Co1/3Mn1/3O2 powders prepared from microwave-hydrothermally derived precursors [J]. Journal of Alloys and Compounds, 2010, 497(1-2): 159–165.
- YABUUCHI N, OHZUKU T. Novel lithium insertion material of LiCo1/3Ni1/3Mn1/3O2 for advanced lithium-ion batteries[J]. Journal of Power Sources, 2003, 119-121: 171–174.
- Todorov Y M, Numata K. Effects of the Li:(Mn+Co+Ni) molar ratio on the electrochemical properties of LiMn1/3Co1/3Ni1/3O2 cathode material[J]. Electrochimica Acta, 2004, 50: 495–499.
- Cho T H, Park S M, YOSHIO M, HIRAI T, HIDESHIMA Y. Effect of synthesis condition on the structural and electrochemical properties of Li[Ni1/3Mn1/3Co1/3]O2 prepared by carbonate co-precipitation method[J]. Journal of Power Sources, 2005, 142: 306–312.
- Lim J H, BANG H, LEE K, AMINE K, Sun Y K. Electrochemical characterization of Li2MnO3-Li[Ni1/3Co1/3Mn1/3]O2-LiNiO2 cathode synthesized via co-precipitation for lithium secondary batteries[J]. Journal of Power Sources, 2009, 189: 571–575.
- Liu B G, Peng J H, Wan R D, Zhang L B, Guo S H, Zhang S M. Optimization of preparing V2O5 by calcination from ammonium metavanadate using response surface methodology[J]. Trans. Nonferrous Met. Soc. China, 2011, 21: 673–678.
- Lu C H, Shen B J. Electrochemical characteristics of LiNi1/3Co1/3Mn1/3O2 powders prepared from microwave-hydrothermally derived precursors[J]. Journal of Alloys and Compounds, 2010, 497: 159–165.
- Chang H Y, Sheu C I, Cheng S Y, Wu H C, Guo Z Z. Synthesis of Li1.1Ni1/3Co1/3Mn1/3O2 cathode material using spray-microwave method[J]. Journal of Power Sources, 2007, 174: 985–989.