Lee Edmond P F, Dyke John M, Mok Daniel K W, Chau Foo-tim, Chow Wan-ki
Department of Applied Biology and Chemical Technology, The Hong Kong Polytechnic University, Hung Hom, Hong Kong.
J Chem Phys. 2007 Sep 7;127(9):094306. doi: 10.1063/1.2768355.
Geometry optimization and harmonic vibrational frequency calculations have been carried out on the low-lying singlet and triplet electronic states of the antimony dioxide anion (SbO2-) employing a variety of ab initio methods. Both large-core and small-core relativistic effective core potentials were used for Sb in these calculations, together with valence basis sets of up to augmented correlation-consistent polarized-valence quintuple-zeta (aug-cc-pV5Z) quality. The ground electronic state of SbO2- is determined to be the X (1)A1 state, with the a (3)B1 state, calculated to be approximately 48 kcal mole(-1) (2.1 eV) higher in energy. Further calculations were performed on the X (2)A1, A (2)B2, and B (2)A2 states of SbO2 with the aim to simulating the photodetachment spectrum of SbO(2) (-). Potential energy functions (PEFs) of the X (1)A1 state of SbO2- and the X (2)A1, A (2)B2, and B (2)A2 states of SbO2 were computed at the complete-active-space self-consistent-field multireference internally contracted configuration interaction level with basis sets of augmented correlation-consistent polarized valence quadruple-zeta quality. Anharmonic vibrational wave functions obtained from these PEFs were used to compute Franck-Condon factors between the X (1)A1 state of SbO2- and the X (2)A1, A (2)B2, and B (2)A2 states of SbO2, which were then used to simulate the photodetachment spectrum of SbO2-, which is yet to be recorded experimentally.
利用多种从头算方法,对二氧化锑阴离子(SbO2-)的低能单重态和三重态电子态进行了几何优化和谐波振动频率计算。在这些计算中,对Sb使用了大核和小核相对论有效核势,以及高达增强相关一致极化价五次zeta(aug-cc-pV5Z)质量的价基组。确定SbO2-的基态电子态为X (1)A1态,计算得出的a (3)B1态能量高出约48千卡/摩尔(2.1电子伏特)。对SbO2的X (2)A1、A (2)B2和B (2)A2态进行了进一步计算,目的是模拟SbO(2) (-)的光剥离光谱。在完全活性空间自洽场多参考内收缩组态相互作用水平下,使用增强相关一致极化价四次zeta质量的基组,计算了SbO2-的X (1)A1态以及SbO2的X (2)A1、A (2)B2和B (2)A2态的势能函数(PEF)。从这些PEF获得的非谐振动波函数用于计算SbO2-的X (1)A1态与SbO2的X (2)A1、A (2)B2和B (2)A2态之间的弗兰克-康登因子,然后用于模拟尚未通过实验记录的SbO2-的光剥离光谱。