Synergistic catalytic allenylic alkylation for stereodivergent construction of allenes bearing 1,3-axial central chirality

IF 4.6 1区 化学 Q1 CHEMISTRY, ORGANIC
Min Chen, Yuzhen Li, Jun He, Lili Lin, Liang-Wen Feng, Xiaohua Liu
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引用次数: 0

Abstract

A highly efficient asymmetric allenylic alkylation for the construction of allenes bearing allenyl axial and central chirality through synergistic Ni/Pd catalysis has been developed. This catalytic protocol operates smoothly under one-pot, additive-free conditions, offering exceptional step efficiency and high atomic economy. A wide range of chiral two or three-substituted allenes bearing multi-substituted acyclic or cyclic carbonyl moieties were obtained with excellent reactivity and stereoselectivity under this dual catalytic system. The stereodivergent synthesis was successfully realized, delivering all stereoisomers in high yields. Diastereoselectivity reversal manifested that the chiral Lewis acid catalyst could effectively override the stereocontrol capability of the chiral plladium catalyst itself, enabling access to dynamically disfavored diastereomers with high enantiocontrol. Gram-scale synthesis and further transformation experiment demonstrate the potential utility of this method.
具有1,3轴中心手性的烯丙烯立体发散结构的协同催化烷基化
通过Ni/Pd的协同催化,建立了一种高效的不对称烯丙烯烷基化反应,以构建具有轴手性和中心手性的烯丙烯。该催化协议在一锅下平稳运行,无添加剂的条件下,提供卓越的步骤效率和高原子经济性。在该双催化体系下,可制得多种含多取代无环或环羰基基团的手性二取代或三取代烯,具有良好的反应活性和立体选择性。成功地实现了立体发散合成,以高收率得到了所有的立体异构体。非对映选择性逆转表明,手性Lewis酸催化剂可以有效地覆盖手性铂催化剂本身的立体控制能力,从而获得具有高对映控制力的动态不利的非对映体。克尺度合成和进一步转化实验证明了该方法的潜在实用性。
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来源期刊
Organic Chemistry Frontiers
Organic Chemistry Frontiers CHEMISTRY, ORGANIC-
CiteScore
7.90
自引率
11.10%
发文量
686
审稿时长
1 months
期刊介绍: Organic Chemistry Frontiers is an esteemed journal that publishes high-quality research across the field of organic chemistry. It places a significant emphasis on studies that contribute substantially to the field by introducing new or significantly improved protocols and methodologies. The journal covers a wide array of topics which include, but are not limited to, organic synthesis, the development of synthetic methodologies, catalysis, natural products, functional organic materials, supramolecular and macromolecular chemistry, as well as physical and computational organic chemistry.
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