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酰基硼酸酯的催化不对称转移氢化反应:以BMIDA作为优势导向基团

Catalytic Asymmetric Transfer Hydrogenation of Acylboronates: BMIDA as the Privileged Directing Group.

作者信息

Meng Xiangjian, Lan Shouang, Chen Ting, Luo Haotian, Zhu Lixuan, Chen Nanchu, Liu Jinggong, Yang Shuang, Cotman Andrej Emanuel, Zhang Qi, Fang Xinqiang

机构信息

State Key Laboratory of Structural Chemistry, and Key Laboratory of Coal to Ethylene Glycol and Its Related Technology, Center for Excellence in Molecular Synthesis, Fujian Institute of Research on the Structure of Matter, University of Chinese Academy of Sciences, Fuzhou 350100, China.

Fujian Normal University, Fuzhou 350007, China.

出版信息

J Am Chem Soc. 2024 Jul 24;146(29):20357-20369. doi: 10.1021/jacs.4c05924. Epub 2024 Jun 13.

Abstract

Developing a general, highly efficient, and enantioselective catalytic method for the synthesis of chiral alcohols is still a formidable challenge. We report in this article the asymmetric transfer hydrogenation (ATH) of -methyliminodiacetyl (MIDA) acylboronates as a general substrate-independent entry to enantioenriched secondary alcohols. ATH of acyl-MIDA-boronates with (het)aryl, alkyl, alkynyl, alkenyl, and carbonyl substituents delivers a variety of enantioenriched α-boryl alcohols. The latter are used in a range of stereospecific transformations based on the boron moiety, enabling the synthesis of carbinols with two closely related α-substituents, which cannot be obtained with high enantioselectivities using direct asymmetric hydrogenation methods, such as the ()-cloperastine intermediate. Computational studies illustrate that the BMIDA group is a privileged enantioselectivity-directing group in Noyori-Ikariya ATH compared to the conventionally used aryl and alkynyl groups due to the favorable CH-O attractive electrostatic interaction between the η-arene-CH of the catalyst and the σ-bonded oxygen atoms in BMIDA. The work expands the domain of conventional ATH and shows its huge potential in addressing challenges in symmetric synthesis.

摘要

开发一种通用、高效且对映选择性的催化方法来合成手性醇仍然是一项艰巨的挑战。我们在本文中报道了以甲基亚氨基二乙酸(MIDA)酰基硼酸酯作为通用的与底物无关的原料,通过不对称转移氢化(ATH)反应制备对映体富集的仲醇。对带有(杂)芳基、烷基、炔基、烯基和羰基取代基的酰基 - MIDA - 硼酸酯进行ATH反应,可得到多种对映体富集的α - 硼基醇。后者可用于基于硼部分的一系列立体专一性转化反应,从而能够合成具有两个紧密相关α - 取代基的甲醇,而使用直接不对称氢化方法(如() - 氯哌斯汀中间体)无法以高对映选择性获得此类化合物。计算研究表明,与传统使用的芳基和炔基相比,在野依 - 伊卡里亚不对称转移氢化反应中,BMIDA基团是一种具有优势的对映选择性导向基团,这是由于催化剂的η - 芳烃 - CH与BMIDA中σ键合的氧原子之间存在有利的CH - O吸引静电相互作用。这项工作扩展了传统ATH反应的范畴,并展示了其在应对不对称合成挑战方面的巨大潜力。

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