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钍碳笼(Th@C)、钍碳笼(Th@C)、钍碳笼(Th@C)和钍碳笼(Th@C):钍包封在确定中等尺寸内嵌金属富勒烯的球形芳香性和键合性质中的作用 。 需注意,原文中“Th@C”多次重复表述不太符合正常规范,可能存在信息不完整或有误的情况,但按照要求进行了翻译。

Th@C, Th@C, Th@C, and Th@C: role of thorium encapsulation in determining spherical aromatic and bonding properties on medium-sized endohedral metallofullerenes.

作者信息

Muñoz-Castro Alvaro, King R Bruce

机构信息

Laboratorio de Química Inorgánica y Materiales Moleculares, Universidad Autonoma de Chile, Llano Subercaseaux 2801, San Miguel, Santiago, Chile.

Department of Chemistry, University of Georgia, Athens, Georgia 30602, USA.

出版信息

Phys Chem Chem Phys. 2020 Oct 28;22(41):23920-23928. doi: 10.1039/d0cp03784b.

DOI:10.1039/d0cp03784b
PMID:33073794
Abstract

Thorium encapsulated metallofullerenes (Th-EMFs) with external C76, C80, C82, and C86 cages have been synthesized, with the 13C-NMR spectrum recorded for Th@C82. Here, we explore computationally the chemical bonding, NMR and spherical aromaticity of Th@C82 and related thorium-encapsulated metallofullerenes. Our results show that these Th-EMFs are new examples of spherical aromatic structures, representing interesting low-symmetry exceptions to the Hirsch 2(N + 1)2 rule of spherical aromaticity. Their electronic structures are based on π-electron counts of 80, 84, 86, and 90, respectively, with a shell structure ranging from S2P6D10F14G18H22I8 to S2P6D10F14G18H22I18, where the partially filled I-shell remains as a frontier orbital. Their behavior is comparable to that of the spherical aromatic alkali-C606- phases, which in addition to the favorable endohedral Th-fullerene bonding account for their particular abundance exhibiting the ability to sustain a long-range shielding cone as a result of the favorable metal-cage bonding. This rationalization of such species as neutral spherical aromatic EMFs suggests the possibility of an extensive series of aromatic fullerenes with nuclearity larger than C60 buckminsterfullerene as stable building blocks towards nanostructured metal-organic materials.

摘要

已合成出具有外部C76、C80、C82和C86笼状结构的钍包封金属富勒烯(Th-EMFs),并记录了Th@C82的13C-NMR谱。在此,我们通过计算探索了Th@C82及相关钍包封金属富勒烯的化学键、NMR和球形芳香性。我们的结果表明,这些Th-EMFs是球形芳香结构的新实例,代表了Hirsch球形芳香性2(N + 1)2规则中有趣的低对称性例外情况。它们的电子结构分别基于80、84、86和90的π电子数,壳层结构范围从S2P6D10F14G18H22I8到S2P6D10F14G18H22I18,其中部分填充的I壳层作为前沿轨道保留。它们的行为与球形芳香碱-C606-相的行为相当,除了有利的内包钍富勒烯键合外,由于有利的金属-笼键合,它们还具有能够维持长程屏蔽锥的特殊丰度。将此类物质合理化为中性球形芳香EMFs表明,有可能存在一系列比C60巴克明斯特富勒烯核数更大的芳香富勒烯,作为纳米结构金属有机材料的稳定构建块。

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