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取代芳基五磷杂环戊二烯配体——跨越p区元素的探索之旅。

Substituted aromatic pentaphosphole ligands - a journey across the p-block.

作者信息

Riesinger Christoph, Balázs Gábor, Seidl Michael, Scheer Manfred

机构信息

Institute of Inorganic Chemistry, University of Regensburg 93040 Regensburg Germany

出版信息

Chem Sci. 2021 Sep 14;12(39):13037-13044. doi: 10.1039/d1sc04296c. eCollection 2021 Oct 13.

Abstract

The functionalization of pentaphosphaferrocene [CpFe(η-P)] () with cationic group 13-17 electrophiles is shown to be a general synthetic strategy towards P-E bond formation of unprecedented diversity. The products of these reactions are dinuclear [{CpFe}{μ,η-(P)EX}][TEF] (EX = BBr (), GaI (), [TEF] = [Al{OC(CF)}]) or mononuclear [CpFe(η-PE)][X] (E = CHPh (), CHPh (), SiHPh (), AsCy (), SePh (), TeMes (), Cl (), Br (), I ()) complexes of hetero-bis-pentaphosphole ((-P)R) or hetero-pentaphosphole ligands (-PR), the aromatic all-phosphorus analogs of prototypical cyclopentadienes. Further, modifying the steric and electronic properties of the electrophile has a drastic impact on its reactivity and leads to the formation of [CpFe(μ,η-P)SbICp'''][TEF] () which possesses a triple-decker-like structure. X-ray crystallographic characterization reveals the slightly twisted conformation of the -PR ligands in these compounds and multinuclear NMR spectroscopy confirms their integrity in solution. DFT calculations shed light on the bonding situation of these compounds and confirm the aromatic character of the pentaphosphole ligands on a journey across the p-block.

摘要

五磷代二茂铁[CpFe(η-P)]()与阳离子13-17族亲电试剂的官能化反应被证明是一种通用的合成策略,可用于形成具有前所未有的多样性的P-E键。这些反应的产物是双核[{CpFe}{μ,η-(P)EX}][TEF](EX = BBr(),GaI(),[TEF] = [Al{OC(CF)}])或单核[CpFe(η-PE)][X](E = CHPh(),CHPh(),SiHPh(),AsCy(),SePh(),TeMes(),Cl(),Br(),I())的杂双五磷环戊二烯((-P)R)或杂五磷环戊二烯配体(-PR)配合物,它们是典型环戊二烯的芳香族全磷类似物。此外,改变亲电试剂的空间和电子性质对其反应性有巨大影响,并导致形成具有类似三明治结构的[CpFe(μ,η-P)SbICp'''][TEF]()。X射线晶体学表征揭示了这些化合物中-PR配体的轻微扭曲构象,多核NMR光谱证实了它们在溶液中的完整性。DFT计算揭示了这些化合物的键合情况,并在整个p区证实了五磷环戊二烯配体的芳香性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ee24/8513863/bbbe8df7c8bb/d1sc04296c-s1.jpg

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