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U@C(2=82-86)的晶体学特性:对单金属富勒烯金属笼相互作用的深入了解。

Crystallographic Characterization of U@C (2 = 82-86): Insights about Metal-Cage Interactions for Mono-metallofullerenes.

机构信息

Department of Chemistry and Biochemistry, University of Texas at El Paso, 500 W University Avenue, El Paso, Texas 79968, United States.

Departament de Química Física i Inorgànica, Universitat Rovira i Virgili, c/Marcel·lí Domingo 1, 43007 Tarragona, Spain.

出版信息

J Am Chem Soc. 2021 Sep 22;143(37):15309-15318. doi: 10.1021/jacs.1c06833. Epub 2021 Sep 13.

Abstract

Endohedral mono-metallofullerenes are the prototypes to understand the fundamental nature and the unique interactions between the encapsulated metals and the fullerene cages. Herein, we report the crystallographic characterizations of four new U-based mono-metallofullerenes, namely, U@(6)-C, U@(8)-C, U@(15)-C, and U@(12)-C, among which the chiral cages (8)-C and (12)-C have never been previously reported for either endohedral or empty fullerenes. Symmetrical patterns, such as indacene, sumanene, and phenalene, and charge transfer are found to determine the metal positions inside the fullerene cages. In addition, a new finding concerning the metal positions inside the cages reveals that the encapsulated metal ions are always located on symmetry planes of the fullerene cages, as long as the fullerene cages possess mirror planes. DFT calculations show that the metal-fullerene motif interaction determines the stability of the metal position. In fullerenes containing symmetry planes, the metal prefers to occupy a symmetrical arrangement with respect to the interacting motifs, which share one of their symmetry planes with the fullerene. In computationally analyzed fullerenes containing at least one symmetry plane, the actinide was found to be located on the mirror plane. This finding provides new insights into the nature of metal-cage interactions and gives new guidelines for structural determinations using crystallographic and theoretical methods.

摘要

笼内单核金属富勒烯是理解包埋金属与富勒烯笼之间基本性质和独特相互作用的原型。在此,我们报告了四个新的基于 U 的单核金属富勒烯的晶体学特征,即 U@(6)-C、U@(8)-C、U@(15)-C 和 U@(12)-C,其中手性笼 (8)-C 和 (12)-C 以前从未在笼内或空富勒烯中报道过。对称模式,如茚并[1,2-b]咔唑、sumanene 和 phenalene,以及电荷转移被发现决定了金属在富勒烯笼内的位置。此外,关于笼内金属位置的一个新发现表明,只要富勒烯笼具有镜像平面,包埋的金属离子总是位于富勒烯笼的对称平面上。DFT 计算表明,金属-富勒烯基元相互作用决定了金属位置的稳定性。在具有对称平面的富勒烯中,金属倾向于相对于相互作用的基元占据对称排列,这些基元与富勒烯共享它们的一个对称平面。在至少具有一个对称平面的计算分析的富勒烯中,发现 actinide 位于镜像平面上。这一发现为金属-笼相互作用的性质提供了新的见解,并为使用晶体学和理论方法进行结构确定提供了新的指导。

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