大学化学

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不对称有机催化控制三角锥形氮中心手性

王烁圻, 林佳怡, 王成明   

  1. 暨南大学化学系, 广东 广州 511443
  • 收稿日期:2025-12-18 修回日期:2026-03-06
  • 通讯作者: 王成明 E-mail:cmwang2019@jnu.edu.cn Chengming Wang
  • 基金资助:
    国家自然科学基金(22571122);广东省基础与应用基础研究基金(2025A1515012467);中央高校教育教学改革专项(82625024)

Asymmetric organocatalysis for steering trigonal pyramidal nitrogen-centered chirality

Shuoqi Wang, Jiayi Lin, Chengming Wang   

  1. Department of Chemistry, Jinan University, Guangzhou 511443, Guangdong Province, China
  • Received:2025-12-18 Revised:2026-03-06
  • Contact: Chengming Wang E-mail:cmwang2019@jnu.edu.cn

摘要: 手性是分子与其镜像不能重合的特性。手性化合物广泛存在于自然界,其对映异构体往往表现出显著不同的化学性质,因此高选择性合成单一构型对映体是合成化学的核心挑战之一。目前,四面体碳中心手性的构筑方法已较为成熟,然而对于三角锥形立体结构,尤其是氮中心手性的高效、高选择性构建,仍是该领域的前沿难题。近期,谭斌课题组、List团队等在该方向相继取得重要突破,实现了锥形氮中心手性结构的高对映选择性合成。本文详细介绍不对称有机催化在该领域的最新进展,以帮助读者把握化学前沿动态、拓展学术视野,并提升对相关科学问题的独立思考与研究能力。

关键词: 手性, 不对称催化, 有机催化, 氮中心手性, 翻转能垒

Abstract: Chirality describes the molecular property of being non-superimposable with its mirror image. As chiral compounds are widely distributed in nature and their enantiomers frequently display significantly distinct chemical properties, the highly selective synthesis of single-configuration enantiomers represents a fundamental challenge in synthetic chemistry. While synthetic methodologies for tetrahedral carboncentered chirality have become well-developed, the efficient and stereoselective construction of trigonal pyramidal stereocenters—particularly those featuring nitrogen as the chiral center—remains a frontier challenge in this field. Recent groundbreaking work by the Tan and List research groups has achieved highly enantioselective synthesis of pyramidal nitrogen-centered chiral structures. This review comprehensively summarizes recent progress in asymmetric organocatalysis for controlling such chirality, providing readers with updated knowledge of chemical frontiers, expanded academic perspectives, and enhanced capabilities for independent research on related scientific questions.

Key words: Chirality, Asymmetric catalysis, Organocatalysis, Nitrogen-centered chirality, Inversion barrier