Tan Kai, Lu Xin
State Key Laboratory of Physical Chemistry of Soild Surface and Center for Theoretical Chemistry, Department of Chemistry, Xiamen University, Xiamen 361005, China.
J Phys Chem A. 2006 Jan 26;110(3):1171-6. doi: 10.1021/jp056145f.
Density functional theory calculations have shown that the open-shell metal-carbide endofullerene Sc3C2@C80 has the valence state (Sc3+)3(C2)(3-)@C80(6-). A lot of low-lying isomers differing in geometries and locations of the endohedral [(Sc3+)3(C2)(3-)] cluster have been located, indicating unusual dual intramolecular dynamic behaviors of this endofullerene at room temperature. The electrochemical redox properties of this endofullerene have been elucidated in terms of electronic structure theory. Its redox states are found to follow the general charge-state formula (Sc3+)3C2(3-q)-@C80(6-) (q is the charge of the whole molecule ranging from +1 to -3), demonstrating the high charge flexibility of the endohedral metal-carbide cluster. The structure of the endohedral [(Sc3+)3C2(3-q)-)] cluster varies with the redox processes, shifting from a planar structure (for q = 0 and -1) to a trifoliate structure (for q = +1, -2, -3).
密度泛函理论计算表明,开壳层金属碳化物内嵌富勒烯Sc3C2@C80具有价态(Sc3+)3(C2)(3-)@C80(6-)。已经找到了许多内包[(Sc3+)3(C2)(3-)]簇的几何结构和位置不同的低能异构体,这表明该内嵌富勒烯在室温下具有异常的双重分子内动态行为。根据电子结构理论阐明了该内嵌富勒烯的电化学氧化还原性质。发现其氧化还原态遵循一般电荷态公式(Sc3+)3C2(3-q)-@C80(6-)(q为整个分子的电荷,范围从+1到-3),这表明内包金属碳化物簇具有高电荷灵活性。内包[(Sc3+)3C2(3-q)-)]簇的结构随氧化还原过程而变化,从平面结构(q = 0和-1)转变为三叶结构(q = +1、-2、-3)。