Dai Xing, Gao Yang, Xin Minsi, Wang Zhigang, Zhou Ruhong
Institute of Atomic and Molecular Physics, Jilin University, Changchun 130012, People's Republic of China.
J Chem Phys. 2014 Dec 28;141(24):244306. doi: 10.1063/1.4904389.
As a representative lanthanide endohedral metallofullerene, Gd@C82 has attracted a widespread attention among theorists and experimentalists ever since its first synthesis. Through comprehensive comparisons and discussions, as well as references to the latest high precision experiments, we evaluated the performance of different computational methods. Our results showed that the appropriate choice of the exchange-correlation functionals is the decisive factor to accurately predict both geometric and electronic structures for Gd@C82. The electronic structure of the ground state and energy gap between the septet ground state and the nonet low-lying state obtained from pure density functional methods, such as PBE and PW91, are in good agreement with current experiment. Unlike pure functionals, the popularly used hybrid functionals in previous studies, such as B3LYP, could infer the qualitative correct ground state only when small basis set for C atoms is employed. Furthermore, we also highlighted that other geometric structures of Gd@C82 with the Gd staying at different positions are either not stable or with higher energies. This work should provide some useful references for various theoretical methodologies in further density functional studies on Gd@C82 and its derivatives in the future.
作为一种典型的镧系内嵌金属富勒烯,Gd@C82自首次合成以来就引起了理论家和实验家的广泛关注。通过全面的比较和讨论,并参考最新的高精度实验,我们评估了不同计算方法的性能。我们的结果表明,交换关联泛函的恰当选择是准确预测Gd@C82几何结构和电子结构的决定性因素。从诸如PBE和PW91等纯密度泛函方法得到的基态电子结构以及七重态基态与九重态低能态之间的能隙,与当前实验结果吻合良好。与纯泛函不同,先前研究中常用的杂化泛函,如B3LYP,只有在采用小基组的C原子时才能推断出定性正确的基态。此外,我们还强调,Gd处于不同位置的Gd@C82的其他几何结构要么不稳定,要么能量更高。这项工作应为未来对Gd@C82及其衍生物进行进一步密度泛函研究的各种理论方法提供一些有用的参考。