Asymmetric Synthesis of Vicinal Tetrasubstituted Diamines via Reductive Coupling of Ketimines Templated by Chiral Diborons

Author:

Zhou Mingkang1,Lin Yaodong1,Chen Xiao‐Xuan2,Xu Guangqing1,Chung Lung Wa2,Tang Wenjun13ORCID

Affiliation:

1. State Key Laboratory of Bio-Organic and Natural Products Chemistry Shanghai Institute of Organic Chemistry University of Chinese Academy of Sciences 345 Ling Ling Road Shanghai 200032 China

2. Shenzhen Grubbs Institute Department of Chemistry and Guangdong Provincial Key Laboratory of Catalysis Southern University of Science and Technology Shenzhen 518055 China

3. School of Chemistry and Materials Science Hangzhou Institute for Advanced Study University of Chinese Academy of Sciences 1 Sub-lane Xiangshan Hangzhou 310024 China

Abstract

AbstractWe herein describe the chiral diboron‐templated asymmetric homocoupling of aryl alkyl ketimines, providing for the first time a series of chiral vicinal tetrasubstituted diamines with excellent ee values and good to high yields. The powerful and efficient diboron‐participated [3,3]‐sigmatropic rearrangement is successfully demonstrated by the homocoupling of a variety of ketimines thanks to the rational design and engineering of chiral diborons. Systematic DFT studies suggest that two chiral diborons adopt different conformational assembling strategies to couple the diboron template with ketimine substrates in their tight concerted transition states to ensure the excellent enantioselectivities. The synthetic value of chiral vicinal tetrasubstituted diamines is demonstrated by the asymmetric α‐bromination of aliphatic aldehydes by employing a chiral vicinal tetrasubstituted diamine‐based organocatalyst.

Funder

National Key Research and Development Program of China

National Natural Science Foundation of China

Youth Innovation Promotion Association

Publisher

Wiley

Subject

General Medicine

Reference88 articles.

1. For selected examples of chiral vicinal tetrasubstituted diamines found in active pharmaceutical ingredients see:

2. Synthesis and antiproliferative activity of hindered, chiral 1,2-diaminodiamantane platinum(ii) complexes

3. Discovery of RG7112: A Small-Molecule MDM2 Inhibitor in Clinical Development

4. Efficient Large-Scale Synthesis of a 2,4,5-Triarylimidazoline MDM2 Antagonist

5. For selected examples of chiral vicinal tetrasubstituted diamines found in magnetic materials see:

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