Volume 130, Issue 46 pp. 15327-15331
Zuschrift

A Stereodynamic Redox-Interconversion Network of Vicinal Tertiary and Quaternary Carbon Stereocenters in Hydroquinone–Quinone Hybrid Dihydrobenzofurans

Dr. Golo Storch

Dr. Golo Storch

Department of Chemistry, Yale University, New Haven, CT, 06520-8107 USA

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Dr. Byoungmoo Kim

Dr. Byoungmoo Kim

Department of Chemistry, Yale University, New Haven, CT, 06520-8107 USA

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Dr. Brandon Q. Mercado

Dr. Brandon Q. Mercado

Department of Chemistry, Yale University, New Haven, CT, 06520-8107 USA

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Prof. Dr. Scott J. Miller

Corresponding Author

Prof. Dr. Scott J. Miller

Department of Chemistry, Yale University, New Haven, CT, 06520-8107 USA

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First published: 19 September 2018
Citations: 3

Abstract

Reversible redox processes involving hydroquinones and quinones are ubiquitous in biological reaction networks, materials science, and catalysis. While extensively studied in intermolecular settings, less is known about intramolecular scenarios. Herein, we report hydroquinone–quinone hybrid molecules that form two-stereocenter dihydrobenzofurans via intramolecular cyclization under thermodynamic control. A π-methylhistidine peptide-catalyzed kinetic resolution allowed us to study the stereodynamic behavior of enantio- and diastereo-enriched dihydrofurans. In the course of this study, it was revealed that a reversible intramolecular redox-interconversion network connects all four possible stereoisomers via inversion of a quaternary carbon stereocenter without achiral intermediates. As a result, these findings on hydroquinone-quinone hybrid molecules provide insights into potential natural origin and synthetic access of the common dihydrobenzofuran motif.

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