Copper Catalyzed Enantioconvergent Nucleophilic Substitutions

Chunxi Huang, Zilong Wan Wan, Aoping Zhu, Caiyou Chen
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Abstract

As a versatile earth-abundant transition metal, Cu has long been widely applied in the C-C and C-X bond forming reactions. As for now, low-valent Cu(I) is known to reduce the redox active electrophiles via an SET pathway to give the corresponding radical and Cu(II) spe-cies. The resulting Cu(II) species can interact with the radical via the out-sphere pathway, affording the coupling product. Alternatively, Cu(II) can trap the radical through the inner-sphere process to generate Cu(III) species and then realize challenging bond formations due to the facile reductive elimination of Cu(III) intermediate. Although copper catalysis has been widely applied in arylations of various nucleophiles, copper-catalyzed enantioconvergent nucleophilic substitutions of racemic alkyl electrophiles have been less explored, likely due to the difficulties in overcoming the reduction potential of alkyl electrophiles, elimination side reactions, and enantiomeric control. In order to overcome the high reduction potential of alkyl electrophiles, the photo-induced strategy has been developed under mild conditions. An alternative strategy with new anionic tridentate ligands has also been reported in this regard. This review summa-rizes recent developments in copper-catalyzed enantioconvergent nucleophilic substitutions of alkyl electrophiles by various nucleo-philes to realize C-N, C-C, C-B, C-P and C-O bond formations and their brief mechanistic studies.
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铜催化的对映收敛亲核取代
Cu作为一种用途广泛、储量丰富的过渡金属,长期以来被广泛应用于C-C和C-X成键反应中。目前,已知低价Cu(I)通过SET途径还原氧化还原活性亲电试剂,得到相应的自由基和Cu(II)种。所得到的Cu(II)可以通过外球途径与自由基相互作用,产生偶联产物。或者,Cu(II)可以通过内球过程捕获自由基生成Cu(III),然后由于Cu(III)中间体易于还原消除而实现具有挑战性的键形成。尽管铜催化已广泛应用于各种亲核试剂的芳基化反应,但铜催化的外消旋烷基亲电试剂的对映收敛亲核取代尚未得到深入研究,这可能是由于难以克服烷基亲电试剂的还原电位、消除副反应和对映体控制。为了克服烷基亲电试剂的高还原电位,在温和条件下开发了光诱导策略。在这方面也报道了一种新的阴离子三叉戟配体的替代策略。本文综述了近年来铜催化各种亲核试剂对烷基亲核试剂进行对映收敛亲核取代以实现C-N、C-C、C-B、C-P和C-O键形成及其机理的研究进展。
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