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手性钴催化的新范例:阳离子钴(I)催化剂用于烯烃的杂二聚、环加成和氢官能化反应。

A New Paradigm in Enantioselective Cobalt Catalysis: Cationic Cobalt(I) Catalysts for Heterodimerization, Cycloaddition, and Hydrofunctionalization Reactions of Olefins.

机构信息

Department of Chemistry and Biochemistry, The Ohio State University, 100 West 18th Avenue, Columbus, Ohio 43210, United States.

出版信息

Acc Chem Res. 2021 Dec 21;54(24):4545-4564. doi: 10.1021/acs.accounts.1c00573. Epub 2021 Nov 30.

DOI:10.1021/acs.accounts.1c00573
PMID:34847327
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC8721816/
Abstract

One of the major challenges facing organic synthesis in the 21st century is the utilization of abundantly available feedstock chemicals for fine chemical synthesis. Regio- and enantioselective union of easily accessible 1,3-dienes and other feedstocks like ethylene, alkyl acrylates, and aldehydes can provide valuable building blocks adorned with latent functionalities for further synthetic elaboration. Through an approach that relies on mechanistic insights and systematic examination of ligand and counterion effects, we developed an efficient cobalt-based catalytic system [()CoX/MeAl] ( = bisphosphine) to effect the first enantioselective heterodimerization of several types of 1,3-dienes with ethylene. In addition to simple cyclic and acyclic dienes, siloxy-1,3-dienes participate in this reaction, giving highly functionalized, nearly enantiopure silyl enolates, which can be used for subsequent C-C and C-X bond-forming reactions. As our understanding of the mechanism of this reaction improved, our attention was drawn to more challenging partners like alkyl acrylates (one of the largest volume feedstocks) as the olefin partners instead of ethylene. Prompted by the intrinsic limitations of using aluminum alkyls as the activators for this reaction, we explored the fundamental chemistry of the lesser known ()CoX species and discovered that in the presence of halide sequestering agents, such as sodium tetrakis[3,5-bis(trifluoromethyl)phenyl]borate (NaBARF) or (CF)B, certain chiral bisphosphine complexes are superb catalysts for regio- and enantioselective heterodimerization of 1,3-dienes and alkyl acrylates. We have since found that these cationic Co(I) catalysts, most conveniently prepared in situ by reduction of the corresponding cobalt(II) halide complexes by zinc in the presence of NaBARF, promote enantioselective [2 + 2]-cycloaddition between alkynes and an astonishing variety of alkenyl derivatives to give highly functionalized cyclobutenes. In reactions between 1,3-enynes and ethylene, the [2 + 2]-cycloaddition between the alkyne and ethylene is followed by a 1,4-addition of ethylene in a tandem fashion to give nearly enantiopure cyclobutanes with an all-carbon quaternary center, giving a set of molecules that maps well into many medicinally relevant compounds. In another application, we find that the cationic Co(I)-catalysts promote highly selective hydroacylation and 1,2-hydroboration of prochiral 1,3-dienes. Further, we find that a cationic Co(I)-catalyst promotes cycloisomerization followed by hydroalkenylation of 1,6-enynes to produce highly functionalized carbo- and heterocyclic compounds. Surprisingly the regioselectivity of the alkene addition depends on whether it is a simple alkene or an acrylate, and the acrylate addition produces an uncommon -adduct. This Account will provide a summary of the enabling basic discoveries and the attendant developments that led to the unique cationic Co(I)-complexes as catalysts for disparate C-C and C-B bond-forming reactions. It is our hope that this Account will stimulate further work with these highly versatile catalysts which are derived from an earth-abundant metal.

摘要

在 21 世纪,有机合成所面临的主要挑战之一是利用丰富的原料化学品进行精细化学品合成。易于获得的 1,3-二烯和其他原料(如乙烯、烷基丙烯酸盐和醛)的区域和对映选择性结合,可以为进一步的合成提供具有潜在功能的有价值的构建块。通过依赖于机制见解和配体及抗衡离子效应的系统研究,我们开发了一种高效的钴基催化体系[()CoX/MeAl](=双膦配体),用于几种类型的 1,3-二烯与乙烯的首次对映选择性杂二聚反应。除了简单的环状和非环状二烯外,硅氧基-1,3-二烯也参与了这个反应,得到了高度官能化的、近乎对映纯的硅烯醇盐,它们可用于随后的 C-C 和 C-X 键形成反应。随着我们对该反应机制的理解的提高,我们的注意力被吸引到更具挑战性的烷基丙烯酸盐等作为烯烃伙伴,而不是乙烯作为烯烃伙伴。由于使用铝烷基作为该反应的活化剂存在内在限制,我们探索了不太知名的 ()CoX 物种的基础化学,并发现,在卤化物封闭剂(如四[3,5-双(三氟甲基)苯基]硼酸(NaBARF)或(CF)B)的存在下,某些手性双膦配合物是区域和对映选择性 1,3-二烯和烷基丙烯酸盐杂二聚反应的出色催化剂。此后,我们发现这些阳离子 Co(I)催化剂,最方便地通过锌在 NaBARF 存在下还原相应的钴(II)卤化物配合物原位制备,可促进炔烃与各种烯基衍生物之间的高对映选择性[2+2]-环加成反应,得到高度官能化的环丁烯。在 1,3-烯炔与乙烯的反应中,炔烃与乙烯之间的[2+2]-环加成反应后,乙烯以串联方式进行 1,4-加成,得到几乎对映纯的具有全碳季碳原子的环丁烷,得到一组很好地映射到许多具有医学相关性的化合物的分子。在另一个应用中,我们发现阳离子 Co(I)-催化剂可促进前手性 1,3-二烯的高选择性氢酰化和 1,2-氢硼化反应。此外,我们发现阳离子 Co(I)-催化剂可促进 1,6-烯炔的环异构化,随后进行氢烯丙基化,生成高度官能化的碳环和杂环化合物。令人惊讶的是,烯烃加成的区域选择性取决于它是简单的烯烃还是丙烯酸盐,而丙烯酸盐加成则产生不常见的β-加成产物。该账户将提供一组使能的基本发现的摘要以及随之而来的发展,这些发现和发展导致了独特的阳离子 Co(I)-配合物作为不同 C-C 和 C-B 键形成反应的催化剂。我们希望这个账户将激发进一步使用这些高度多功能的催化剂的工作,这些催化剂是由地球丰富的金属衍生而来的。

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2
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3
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