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Nickel-Catalyzed Allylic Alkylation with Diarylmethane Pronucleophiles: Development and Mechanistic Insight

机译:镍催化的二芳基甲烷亲核试剂的烯丙基烷基化:发展和机制的见解。

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摘要

Palladium-catalyzed allylic substitution reactions are among the most efficient methods to construct C–C bonds between sp3-hybridized carbons. In contrast, much less work has been done with nickel catalysts. This may be due, in part, to the different mechanisms of allylic substitution reactions. Palladium catalysts generally undergo substitution via a “soft” nucleophile pathway, wherein the nucleophile attacks the allyl group externally. Nickel catalysts are usually paired with “hard” nucleophiles, which attack the metal before C–C bond-formation. Herein is introduced a rare nickel-based catalyst that promotes substitution with diarylmethane pronucleophiles via the “soft” nucleophile pathway. Preliminary studies on the asymmetric allylic alkylation are promising.
机译:钯催化的烯丙基取代反应是在sp 3 杂化碳之间构建C–C键的最有效方法之一。相反,镍催化剂的工作量要少得多。这可能部分归因于烯丙基取代反应的不同机制。钯催化剂通常通过“软”亲核体途径进行取代,其中亲核体从外部攻击烯丙基。镍催化剂通常与“硬”亲核试剂配对,这些亲核试剂会在C-C键形成之前腐蚀金属。本文介绍了一种罕见的镍基催化剂,可通过“软”亲核途径促进二芳基甲烷亲核试剂的取代。对不对称烯丙基烷基化的初步研究是有希望的。

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