Roy Tapta Kanchan, Carrington Tucker, Gerber R Benny
Institute of Chemistry and The Fritz Haber Research Center, The Hebrew University , Jerusalem 91904, Israel.
J Phys Chem A. 2014 Aug 21;118(33):6730-9. doi: 10.1021/jp5060155. Epub 2014 Jul 10.
Anharmonic vibrational spectroscopy calculations using MP2 and B3LYP computed potential surfaces are carried out for a series of molecules, and frequencies and intensities are compared with those from experiment. The vibrational self-consistent field with second-order perturbation correction (VSCF-PT2) is used in computing the spectra. The test calculations have been performed for the molecules HNO3, C2H4, C2H4O, H2SO4, CH3COOH, glycine, and alanine. Both MP2 and B3LYP give results in good accord with experimental frequencies, though, on the whole, MP2 gives very slightly better agreement. A statistical analysis of deviations in frequencies from experiment is carried out that gives interesting insights. The most probable percentage deviation from experimental frequencies is about -2% (to the red of the experiment) for B3LYP and +2% (to the blue of the experiment) for MP2. There is a higher probability for relatively large percentage deviations when B3LYP is used. The calculated intensities are also found to be in good accord with experiment, but the percentage deviations are much larger than those for frequencies. The results show that both MP2 and B3LYP potentials, used in VSCF-PT2 calculations, account well for anharmonic effects in the spectroscopy of molecules of the types considered.
使用MP2和B3LYP计算的势能面进行非谐振动光谱计算,针对一系列分子开展计算,并将频率和强度与实验值进行比较。在计算光谱时使用了带有二阶微扰校正的振动自洽场(VSCF-PT2)。已对硝酸(HNO₃)、乙烯(C₂H₄)、乙醛(C₂H₄O)、硫酸(H₂SO₄)、乙酸(CH₃COOH)、甘氨酸和丙氨酸等分子进行了测试计算。MP2和B3LYP给出的结果与实验频率都吻合得很好,不过总体而言,MP2的吻合度略好一些。对与实验频率的偏差进行了统计分析,得出了有趣的见解。B3LYP与实验频率的最可能百分比偏差约为-2%(向实验值的低频方向),MP2为+2%(向实验值的高频方向)。使用B3LYP时出现相对较大百分比偏差的概率更高。计算得到的强度也与实验结果吻合良好,但百分比偏差比频率的偏差大得多。结果表明,VSCF-PT2计算中使用的MP2和B3LYP势能,都能很好地解释所考虑类型分子光谱中的非谐效应。