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深入了解鲜有研究的碳化物簇金属富勒烯的化学性质:以揭示一般规律的Sc2 C2 @C3v (8)-C82为例

In-depth understanding of the chemical properties of rarely explored carbide cluster metallofullerenes: a case study of Sc2 C2 @C3v (8)-C82 that reveals a general rule.

作者信息

Cai Wenting, Chen Muqing, Bao Lipiao, Xie Yunpeng, Akasaka Takeshi, Lu Xing

机构信息

State Key Laboratory of Materials Processing and Die & Mould Technology, School of Materials Science and Engineering, Huazhong University of Science and Technology, 1037 Luoyu Road, Wuhan 430074 (P.R. China).

出版信息

Chemistry. 2015 Feb 16;21(8):3449-54. doi: 10.1002/chem.201405493. Epub 2015 Jan 9.

Abstract

The chemical properties of carbide-cluster metallofullerenes (CCMFs) remain largely unexplored, although several new members of CCMFs have been discovered recently. Herein, we report the reaction between Sc2 C2 @C3v (8)-C82 , which is viewed as a prototypical CCMF because of its high abundance, and 3-triphenylmethyl-5-oxazolidinone (1) to afford the corresponding pyrrolidino derivative Sc2 C2 @C3v (8)-C82 (CH2 )2 NTrt (2; Trt=triphenylmethyl). Single-crystal X-ray crystallography studies of 2 revealed that the reaction takes place at a [6,6]-bond junction, which is directly over the encapsulated C2 unit and is far from either of the two scandium atoms. On the basis of theoretical calculations and by considering previously reports, we have found that a hexagonal carbon ring on the cage of Sc2 C2 @C3v (8)-C82 is highly reactive toward different reagents due to the overlap of high p-orbital axis vector (POAV) angles and large LUMO coefficients. We propose that this highly concentrated area of reactivity is generated by the encapsulation of the Sc2 C2 cluster because this region is absent from the empty fullerene C3v (8)-C82 . Moreover, the absorption and electrochemical results confirm that derivative 2 is more stable than pristine Sc2 C2 @C3v (8)-C82 , thus illuminating its potential applications.

摘要

尽管最近发现了几种新的碳化物簇金属富勒烯(CCMFs)成员,但其化学性质在很大程度上仍未得到探索。在此,我们报道了Sc2C2@C3v(8)-C82(因其高丰度而被视为典型的CCMF)与3-三苯基甲基-5-恶唑烷酮(1)之间的反应,得到了相应的吡咯烷基衍生物Sc2C2@C3v(8)-C82(CH2)2NTrt(2;Trt = 三苯基甲基)。对2的单晶X射线晶体学研究表明,反应发生在[6,6]键连接处,该连接处直接位于封装的C2单元上方,且远离两个钪原子中的任何一个。基于理论计算并参考先前的报道,我们发现Sc2C2@C3v(8)-C82笼上的六元碳环由于高p轨道轴矢量(POAV)角的重叠和大的最低未占分子轨道(LUMO)系数,对不同试剂具有高反应活性。我们提出,这种高反应活性的集中区域是由Sc2C2簇的封装产生的,因为在空的富勒烯C3v(8)-C82中不存在该区域。此外,吸收和电化学结果证实衍生物2比原始的Sc2C2@C3v(8)-C82更稳定,从而揭示了其潜在应用。

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