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二阴离子胍基配体支撑的卤代膦的合成、反应性和计算分析。

Synthesis, reactivity, and computational analysis of halophosphines supported by dianionic guanidinate ligands.

机构信息

Department of Chemistry, The University of Western Ontario, Chemistry Building, 1151 Richmond Street, London, N6A 5B7 Ontario, Canada.

出版信息

J Am Chem Soc. 2012 Mar 21;134(11):5398-414. doi: 10.1021/ja300587z. Epub 2012 Mar 9.

Abstract

The reported chemistry and reactivity of guanidinate supported group 15 elements in the +3 oxidation state, particularly phosphorus, is limited when compared to their ubiquity in supporting metallic elements across the periodic table. We have synthesized a series of chlorophosphines utilizing homo- and heteroleptic (dianionic)guanidinates and have completed a comprehensive study of their reactivity. Most notable is the reluctancy of these four-membered rings to form the corresponding N-heterocyclic phosphenium cations, the tendency to chemically and thermally eliminate carbodiimide, and the scarcely observed ring expansion by insertion of a chloro(imino)phosphine into a P-N bond of the P-N-C-N framework. Computational analysis has provided corroborating evidence for the unwillingness of the halide abstraction reaction by demonstrating the exceptional electron acceptor properties of the target phosphenium cations and the underscoring strength of the P-X bond.

摘要

当与它们在支持整个元素周期表中的金属元素的普遍性相比时,报告的胍基支持的第 15 族元素在+3 氧化态下的化学和反应性是有限的。我们已经合成了一系列利用同和杂(二阴离子)胍基的氯膦,并对其反应性进行了全面研究。最值得注意的是,这些四元环形成相应的 N-杂环磷翁阳离子的不情愿,化学和热消除碳二亚胺的趋势,以及通过插入氯(亚氨基)膦进入 P-N-C-N 框架的 P-N 键几乎观察到的环扩展。计算分析通过证明目标磷翁阳离子异常的电子接受体性质和强调 P-X 键的强度,为卤化物消除反应的不情愿提供了佐证证据。

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