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铈(IV)亚氨基配合物:结构、计算和反应性研究。

Cerium(IV) Imido Complexes: Structural, Computational, and Reactivity Studies.

机构信息

P. Roy and Diana T. Vagelos Laboratories, Department of Chemistry, University of Pennsylvania , 231 South 34th Street, Philadelphia, Pennsylvania 19104, United States.

出版信息

J Am Chem Soc. 2017 Feb 15;139(6):2435-2442. doi: 10.1021/jacs.6b12369. Epub 2017 Feb 6.

Abstract

A series of alkali metal capped cerium(IV) imido complexes, [M(solv)][Ce═N(3,5-(CF)CH)(TriNOx)] (M = Li, K, Rb, Cs; solv = TMEDA, THF, EtO, or DME), was isolated and fully characterized. An X-ray structural investigation of the cerium imido complexes demonstrated the impact of the alkali metal counterions on the geometry of the [Ce═N(3,5-(CF)CH)(TriNOx)] moiety. Substantial shortening of the Ce═N bond was observed with increasing size of the alkali metal cation. The first complex featuring an unsupported, terminal multiple bond between a Ce(IV) ion and a ligand fragment was also isolated by encapsulation of a Cs counterion with 2.2.2-cryptand. This complex shows the shortest recorded Ce═N bond length of 2.077(3) Å. Computational investigation of the cerium imido complexes using DFT methods showed a relatively larger contribution of the cerium 5d orbital than the 4f orbital to the Ce═N bonds. The [K(DME)][Ce═N(3,5-(CF)CH)(TriNOx)] complex cleaves the Si-O bond in (MeSi)O, yielding the [(MeSiO)Ce(TriNOx)] adduct. The reaction of the rubidium capped imido complex with benzophenone resulted in the formation of a rare Ce(IV)-oxo complex, that was stabilized by a supramolecular, tetrameric oligomerization of the Ce═O units with rubidium cations.

摘要

一系列碱金属封端的铈(IV)亚氨基配合物,[M(solv)][Ce ═ N(3,5-(CF)CH)(TriNOx)](M = Li、K、Rb、Cs;solv = TMEDA、THF、EtO 或 DME),被分离并进行了全面表征。铈亚氨基配合物的 X 射线结构研究表明,碱金属反离子对[Ce ═ N(3,5-(CF)CH)(TriNOx)]部分的几何形状有影响。随着碱金属阳离子尺寸的增加,Ce ═ N 键显著缩短。通过用 2.2.2-穴醚封装 Cs 反离子,也分离出了第一个具有 Ce(IV)离子和配体片段之间无支撑的末端多重键的配合物。该配合物显示出记录到的最短的 Ce ═ N 键长为 2.077(3) Å。使用 DFT 方法对铈亚氨基配合物进行的计算研究表明,铈 5d 轨道对 Ce ═ N 键的贡献比 4f 轨道相对更大。[K(DME)][Ce ═ N(3,5-(CF)CH)(TriNOx)]配合物可切断(MeSi)O 中的 Si-O 键,生成[(MeSiO)Ce(TriNOx)]加合物。与二苯甲酮反应后,铷封端的亚氨基配合物形成了一种罕见的 Ce(IV)-氧配合物,该配合物通过 Ce ═ O 单元与铷阳离子的超分子四聚体聚合而稳定。

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