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碳上的配体交换:通往难以捉摸的物种和多功能试剂的合成途径。

Ligand Exchange at Carbon: Synthetic Entry to Elusive Species and Versatile Reagents.

作者信息

Krischer Felix, Gessner Viktoria H

机构信息

Faculty of Chemistry and Biochemistry, Ruhr University Bochum, Universitaetsstrasse 150, 44801 Bochum, Germany.

出版信息

JACS Au. 2024 Apr 15;4(5):1709-1722. doi: 10.1021/jacsau.4c00112. eCollection 2024 May 27.

Abstract

How different is carbon compared to other elements in the periodic table? Can carbon compounds be regarded as coordination complexes with carbon as the central element undergoing a facile exchange of its ligands? Although carbon clearly plays a special role among the elements of the periodic table, recent studies have drawn parallels between the bonding situation and the reactivity of carbon compounds to transition metal complexes. This Perspective summarizes recent reports about ylidic and zwitterionic compounds that were shown to exhibit ambiguous bonding situations that can be interpreted as donor-acceptor interactions similar to the bond between a metal and a neutral ligand. Based on this conception, ligand exchange reactions prototypical of transition metal complexes were realized at carbon atoms, enabling new synthetic strategies for the synthesis of reactive species and building blocks. In particular, the exchange of N, CO, and phosphine ligands led to the development of a mild method for accessing new compounds and reagents with unusual properties, such as vinylidene ketenes or stable ketenyl anions, that open up a diverse but still poorly explored follow-up chemistry.

摘要

与元素周期表中的其他元素相比,碳有何不同?碳化合物能否被视为以碳为中心元素、其配体可轻松交换的配位络合物?尽管碳在元素周期表的元素中显然起着特殊作用,但最近的研究已将碳化合物的键合情况和反应活性与过渡金属络合物进行了比较。本综述总结了最近关于叶立德和两性离子化合物的报道,这些化合物表现出模糊的键合情况,可解释为类似于金属与中性配体之间键合的供体-受体相互作用。基于这一概念,在碳原子上实现了过渡金属络合物典型的配体交换反应,为合成活性物种和结构单元开辟了新的合成策略。特别是,N、CO和膦配体的交换导致了一种温和方法的发展,用于获得具有不寻常性质的新化合物和试剂,如亚乙烯基烯酮或稳定的烯酮基阴离子,这开启了多样但仍未充分探索的后续化学研究。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5a06/11134600/55d4e3578090/au4c00112_0001.jpg

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