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环丁二烯基连接的杂化铀茂的合成、键合性质及醚活化反应活性

Synthesis, bonding properties and ether activation reactivity of cyclobutadienyl-ligated hybrid uranocenes.

作者信息

Tsoureas Nikolaos, Mansikkamäki Akseli, Layfield Richard A

机构信息

Department of Chemistry, School of Life Sciences, University of Sussex Brighton BN1 9QJ UK

NMR Research Unit, University of Oulu P. O. Box 8000 FI-90014 Finland

出版信息

Chem Sci. 2021 Jan 8;12(8):2948-2954. doi: 10.1039/d0sc05199c.

Abstract

A series of hybrid uranocenes consisting of uranium(iv) sandwiched between cyclobutadienyl (Cb) and cyclo-octatetraenyl (COT) ligands has been synthesized, structurally characterized and studied computationally. The dimetallic species [(η-Cb'''')(η-COT)U(μ:η:η-COT)U(THF)(η-Cb'''')] () forms concomitantly with, and can be separated from, monometallic [(η-Cb'''')U(THF)(η-COT)] () (Cb'''' = 1,2,3,4-tetrakis(trimethylsilyl)cyclobutadienyl, COT = cyclo-octatetraenyl). In toluene solution at room temperature, dissociates into and the unsolvated uranocene [(η-Cb'''')U(η-COT)] (). By applying a high vacuum, both and can be converted directly into . Using bulky silyl substituents on the COT ligand allowed isolation of base-free [(η-Cb'''')U{η-1,4-(PrSi)CH}] (), with compounds and being new members of the bis(annulene) family of actinocenes and the first to contain a cyclobutadienyl ligand. Computational studies show that the bonding in the hybrid uranocenes and has non-negligible covalency. New insight into actinocene bonding is provided by the complementary interactions of the different ligands with uranium, whereby the 6d orbitals interact most strongly with the cyclobutadienyl ligand and the 5f orbitals do so with the COT ligands. The redox-neutral activation of diethyl ether by [(η-Cb'''')U(η-CH)] is also described and represents a uranium-cyclobutadienyl cooperative process, potentially forming the basis of further small-molecule activation chemistry.

摘要

一系列由夹在环丁二烯基(Cb)和环辛四烯基(COT)配体之间的铀(IV)组成的混合铀茂已被合成、进行结构表征并通过计算进行研究。双金属物种[(η-Cb'''')(η-COT)U(μ:η:η-COT)U(THF)(η-Cb'''')]()与单金属[(η-Cb'''')U(THF)(η-COT)]()同时形成且可与之分离(Cb'''' = 1,2,3,4-四(三甲基硅基)环丁二烯基,COT = 环辛四烯基)。在室温下的甲苯溶液中,解离为和未溶剂化的铀茂[(η-Cb'''')U(η-COT)]()。通过施加高真空,和都可直接转化为。在COT配体上使用大体积硅基取代基可分离出无碱的[(η-Cb'''')U{η-1,4-(PrSi)CH}](),化合物和是双(环烯)类锕系元素的新成员,且是首个含有环丁二烯基配体的成员。计算研究表明,混合铀茂和中的键合具有不可忽略的共价性。不同配体与铀的互补相互作用为锕系元素键合提供了新的见解,其中6d轨道与环丁二烯基配体的相互作用最强,5f轨道与COT配体的相互作用最强。还描述了[(η-Cb'''')U(η-CH)]对二乙醚的氧化还原中性活化,这代表了铀-环丁二烯基协同过程,可能构成进一步小分子活化化学的基础。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/cf55/8179396/d5fc3aa576f6/d0sc05199c-s1.jpg

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