Issue 44, 2022

ThC2@C82versus Th@C84: unexpected formation of triangular thorium carbide cluster inside fullerenes

Abstract

Synthesis of the first thorium-containing clusterfullerenes, ThC2@Cs(6)–C82 and ThC2@C2(5)–C82, is reported. These two novel actinide fullerene compounds were characterized by mass spectrometry, single-crystal X-ray diffraction crystallography, UV–vis–NIR spectroscopy, and theoretical calculations. Crystallographic studies reveal that the encapsulated ThC2 clusters in both Cs(6)–C82 and C2(5)–C82 feature a novel bonding structure with one thorium metal center connected by a C[triple bond, length as m-dash]C unit, forming an isosceles triangular configuration, which has not been hitherto observed for endohedral fullerenes or for solid phase thorium carbides. Electronic structure calculations assign a formal electronic structure of [Th4+(C2)2−]2+@[C82]2−, with pronounced donation bonding from (C2)2− to Th4+, secondary backbonding from the fullerene to thorium and Th–C double bond character in both compounds. This work presents a new family of endohedral fullerenes, MC2@C2n−2, being unexpected isomers of MC2n, and provides broader understanding of thorium bonding.

Graphical abstract: ThC2@C82versus Th@C84: unexpected formation of triangular thorium carbide cluster inside fullerenes

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Article information

Article type
Edge Article
Submitted
04 صفر 1444
Accepted
23 ربيع الأول 1444
First published
24 ربيع الأول 1444
This article is Open Access

All publication charges for this article have been paid for by the Royal Society of Chemistry
Creative Commons BY license

Chem. Sci., 2022,13, 12980-12986

ThC2@C82versus Th@C84: unexpected formation of triangular thorium carbide cluster inside fullerenes

Y. Shen, X. Yu, Q. Meng, Y. Yao, J. Autschbach and N. Chen, Chem. Sci., 2022, 13, 12980 DOI: 10.1039/D2SC04846A

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