Miller Y, Chaban G M, Gerber R B
Department of Physical Chemistry and Fritz Haber Research Center, The Hebrew University, Jerusalem 91904, Israel.
J Phys Chem A. 2005 Jul 28;109(29):6565-74. doi: 10.1021/jp058110l.
Vibrational frequencies for fundamental, overtone, and combination excitations of sulfuric acid (H2SO4) and of sulfuric acid monohydrate cluster (H2SO4 x H2O) are computed directly from ab initio MP2/TZP potential surface points using the correlation-corrected vibrational self-consistent field (CC-VSCF) method, which includes anharmonic effects. The results are compared with experiment. The computed transitions show in nearly all cases good agreement with experimental data and consistent improvement over the harmonic approximation. The CC-VSCF improvements over the harmonic approximation are largest for the overtone and combination excitations and for the OH stretching fundamental. The agreement between the calculations and experiment also supports the validity of the MP2/TZP potential surfaces. Anharmonic coupling between different vibrational modes is found to significantly affect the vibrational frequencies. Analysis of the mean magnitude of the anharmonic coupling interactions between different pairs of normal modes is carried out. The results suggest possible mechanisms for the internal flow of vibrational energy in H2SO4 and H2SO4 x H2O.
利用包含非谐效应的相关校正振动自洽场(CC-VSCF)方法,直接从从头算MP2/TZP势能面点计算硫酸(H₂SO₄)和一水合硫酸团簇(H₂SO₄·H₂O)的基频、泛频和组合激发的振动频率。将结果与实验进行比较。计算得到的跃迁在几乎所有情况下都与实验数据吻合良好,并且相对于谐振近似有持续的改进。CC-VSCF相对于谐振近似的改进在泛频和组合激发以及OH伸缩基频方面最为显著。计算结果与实验之间的一致性也支持了MP2/TZP势能面的有效性。发现不同振动模式之间的非谐耦合会显著影响振动频率。对不同对简正模式之间非谐耦合相互作用的平均大小进行了分析。结果表明了H₂SO₄和H₂SO₄·H₂O中振动能量内部流动的可能机制。