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通过铜(I)催化酮与硅氧基丙二烯的非对映选择性和对映选择性烯丙基化反应合成三取代邻二醇的不对称合成。

Asymmetric Synthesis of Trisubstituted Vicinal Diols through Copper(I)-Catalyzed Diastereoselective and Enantioselective Allylation of Ketones with Siloxypropadienes.

作者信息

Jiang Nan, Liu Pei-Zhi, Pan Zhi-Zhou, Wang Si-Qing, Peng Qian, Yin Liang

机构信息

Key Laboratory of Fluorine and Nitrogen Chemistry and Advanced Materials Shanghai Institute of Organic Chemistry University of Chinese Academy of Sciences, Chinese Academy of Sciences, 345 Lingling Road, Shanghai, 200032, China.

State Key Laboratory of Elemento-Organic Chemistry and Tianjin Key Laboratory of Biosensing and Molecular Recognition College of Chemistry, Nankai University, 94 Weijin Road, Tianjin, 300071, China.

出版信息

Angew Chem Int Ed Engl. 2024 May 21;63(21):e202402195. doi: 10.1002/anie.202402195. Epub 2024 Apr 17.

Abstract

Chiral trisubstituted vicinal diols are a type of important organic compounds, serving as both common structure units in bioactive natural products and chiral auxiliaries in asymmetric synthesis. Herein, by using siloxypropadienes as the precursors of allyl copper(I) species, a copper(I)-catalyzed diastereoselective and enantioselective reductive allylation of ketones was achieved, providing both syn-diols and anti-diols in good to excellent enantioselectivity. DFT calculations show that cis-γ-siloxy-allyl copper species are generated favorably with either 1-TBSO-propadiene or 1-TIPSO-propadiene. Moreover, the steric difference of TBS group and TIPS group distinguishes the face selectivity of acetophenone, leading to syn-selectivity for 1-TBSO-propadiene and anti-selectivity for 1-TIPSO-propadiene. Easy transformations of the products were performed, demonstrating the synthetic utility of the present method. Moreover, one chiral diol prepared in the above transformations was used as a suitable organocatalyst for the catalytic asymmetric reductive self-coupling of aldimines generated in situ with B(neo).

摘要

手性三取代邻二醇是一类重要的有机化合物,既是生物活性天然产物中的常见结构单元,也是不对称合成中的手性助剂。在此,通过使用硅氧基丙二烯作为烯丙基铜(I)物种的前体,实现了铜(I)催化的酮的非对映选择性和对映选择性还原烯丙基化反应,以良好至优异的对映选择性提供了顺式二醇和反式二醇。密度泛函理论计算表明,顺式-γ-硅氧基-烯丙基铜物种可由1-TBSO-丙二烯或1-TIPSO-丙二烯顺利生成。此外,TBS基团和TIPS基团的空间差异区分了苯乙酮的面选择性,导致对1-TBSO-丙二烯为顺式选择性,对1-TIPSO-丙二烯为反式选择性。对产物进行了简便的转化,证明了本方法的合成实用性。此外,在上述转化中制备的一种手性二醇被用作合适的有机催化剂,用于催化原位生成的醛亚胺与B(新戊基)的不对称还原自偶联反应。

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