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Impact of internal electron transfer on the structure of C-74 encapsulating Sc and La metal atom impurities

机译:内部电子传递对包裹Sc和La金属原子杂质的C-74结构的影响

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Frontier orbital theory as well as the Huckel 4n + 2 rule are discussed as guiding principles for the design and the interpretation of metallofullerene architecture where systems of the form M-i@C-74 (M = Sc, La; i = 1,2) serve as examples. Transfer of electrons from the metal impurities to the fullerene enclosure populates preferentially the low-lying unoccupied molecular orbitals of the cage. It further tends to induce aromaticity in the C, rings neighboring the impurity sites. These observations are used to derive systematically stable structures of the studied mono- and dimetallofullerenes. Various geometries and spin states of M-2@C-74 (M = Sc, La) are considered, and novel ground state candidates are proposed. (c) 2007 Wiley Periodicals, Inc.
机译:讨论了前沿轨道理论以及Huckel 4n + 2规则,作为设计和解释金属富勒烯体系的指导原则,其中Mi @ C-74(M = Sc,La; i = 1,2)形式的系统起作用作为例子。电子从金属杂质到富勒烯外壳的转移优先填充了笼子的低空无人分子轨道。它还趋于在邻近杂质位点的C,环中诱导芳香性。这些观察结果用于推导所研究的单-和双金属富勒烯的系统稳定结构。考虑了M-2 @ C-74(M = Sc,La)的各种几何形状和自旋态,并提出了新颖的基态候选物。 (c)2007年Wiley Periodicals,Inc.

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