Alizadeh M H, Emampour J S, Salimi A R, Razavi H
Department of Chemistry, Ferdowsi University, Mashhad 91779, Iran.
Spectrochim Acta A Mol Biomol Spectrosc. 2007 Apr;66(4-5):1126-32. doi: 10.1016/j.saa.2006.05.023. Epub 2006 May 27.
Optimized geometries and vibrational frequencies were calculated for the hexamolybdoaluminate(III), [AlIII(OH)6Mo6O18]3-, Anderson-type heteropolyanion with the HF, B3LYP, B3PW91, B3P86 and B1LYP methods of theory using the LanL2DZ, SDD and combination of LanL2DZ with 6-31G (d, p) basis sets. The agreement between the optimized and experimental geometries was in the decreasing order: HF, B3P86, B3PW91, B1LYP and B3LYP. The calculated frequencies by the B3LYP have the smallest mean root mean square (RMS) error. The effect of the basis set on the calculated bond lengths and frequencies by the density functional calculations (DFT) methods was minor. The agreement between the previously reported IR and Raman spectra and the calculated values is, in general, good.
采用LanL2DZ、SDD以及LanL2DZ与6-31G(d, p)基组的组合,运用HF、B3LYP、B3PW91、B3P86和B1LYP理论方法,计算了六钼铝酸根(III) [AlIII(OH)6Mo6O18]3- 这种安德森型杂多阴离子的优化几何结构和振动频率。优化几何结构与实验几何结构之间的一致性按降序排列为:HF、B3P86、B3PW91、B1LYP和B3LYP。B3LYP计算得到的频率具有最小的均方根(RMS)误差。基组对密度泛函计算(DFT)方法计算得到的键长和频率的影响较小。先前报道的红外光谱和拉曼光谱与计算值之间的一致性总体良好。