Wang Bing-Qiang, Li Zhi-Ru, Wu Di, Wang Fang-Fang
State Key Laboratory of Theoretical and Computational Chemistry, Institute of Theoretical Chemistry, Jilin University, Changchun 130023, China.
J Phys Chem A. 2007 Jul 19;111(28):6378-82. doi: 10.1021/jp071218b. Epub 2007 Jun 20.
Novel cluster anions Li2F- and Li6F- with alkalide character have been studied in the present paper. In contrast to a typical neutral alkalide, Li2F- contains a F- anion instead of the neutral ligand and forms an alkalide anion F-Li+Li-. In addition to a F- anion ligand, Li6F- contains a Li3+ superalkali cation instead of the alkali metal cation and a Li3- superalkali anion instead of the alkali metal anion, and this alkalide anion can be denoted by F-Li3+Li3-, which is supported by NBO charge results. The results indicate that the F- anion can polarize not only the Li atom but also the Li3 superalkali to form alkalide anions with excess electrons. For Li2F-, two linear structures (1Sigma+ and 3Sigma+ states) are obtained. For Li6F-, the structure of the 1A1 state is a trigonal antiprism capped by the F- anion with C3v symmetry, while the structure of the 7A' state is a slightly distorted trigonal antiprism with Cs symmetry. Due to the excess electrons on the alkali metal and superalkali anions (Li- and Li3-), the alkalide anions Li2F- and Li6F- have large first hyperpolarizabilities (beta0=1.116x10(4)-1.764x10(5) au). For the spin multiplicity effect on electric properties, in these two alkalide anions, the values of the static electric properties, especially the first hyperpolarizabilities, of the high spin states are larger than the corresponding values of the low spin states. For the substitution effect of superalkali atoms, in the two singlet states, as the Li3 superalkalis substitute the Li atoms, the value of the mean of polarizability increases, while the values of dipole moment and the first hyperpolarizability decrease.
本文研究了具有碱化物性质的新型簇阴离子Li2F-和Li6F-。与典型的中性碱化物不同,Li2F-包含一个F-阴离子而非中性配体,并形成碱化物阴离子F-Li+Li-。除了一个F-阴离子配体外,Li6F-包含一个Li3+超碱阳离子而非碱金属阳离子以及一个Li3-超碱阴离子而非碱金属阴离子,并且这种碱化物阴离子可以表示为F-Li3+Li3-,自然键轨道(NBO)电荷结果支持了这一点。结果表明,F-阴离子不仅可以极化Li原子,还可以极化Li3超碱以形成带有多余电子的碱化物阴离子。对于Li2F-,得到了两种线性结构(1Σ+和3Σ+态)。对于Li6F-,1A1态的结构是由F-阴离子封端的具有C3v对称性的三角反棱柱,而7A'态的结构是具有Cs对称性的略微扭曲的三角反棱柱。由于碱金属和超碱阴离子(Li-和Li3-)上存在多余电子,碱化物阴离子Li2F-和Li6F-具有较大的第一超极化率(β0 = 1.116×10(4)-1.764×10(5) au)。对于自旋多重性对电学性质的影响,在这两种碱化物阴离子中,高自旋态的静电学性质值,尤其是第一超极化率的值,大于低自旋态的相应值。对于超碱原子的取代效应,在两个单重态中,随着Li3超碱取代Li原子,极化率平均值增大,而偶极矩和第一超极化率的值减小。