Njegic Bosiljka, Gordon Mark S
Department of Chemistry, Iowa State University, Ames, Iowa 50011, USA.
J Chem Phys. 2006 Dec 14;125(22):224102. doi: 10.1063/1.2395940.
Thermodynamic properties of selected small and medium size molecules were calculated using harmonic and anharmonic vibrational frequencies. Harmonic vibrational frequencies were obtained by normal mode analysis, whereas anharmonic ones were calculated using the vibrational self-consistent field (VSCF) method. The calculated and available experimental thermodynamic data for zero point energy, enthalpy, entropy, and heat capacity are compared. It is found that the anharmonicity and coupling of molecular vibrations can play a significant role in predicting accurate thermodynamic quantities. Limitations of the current VSCF method for low frequency modes have been partially removed by following normal mode displacements in internal, rather than Cartesian, coordinates.
使用谐波和非谐波振动频率计算了选定的中小尺寸分子的热力学性质。谐波振动频率通过正则模式分析获得,而非谐波振动频率则使用振动自洽场(VSCF)方法计算。比较了计算得到的以及可获得的关于零点能、焓、熵和热容的实验热力学数据。结果发现,分子振动的非谐性和耦合在预测精确的热力学量方面可能起着重要作用。通过在内部坐标而非笛卡尔坐标中跟踪正则模式位移,当前VSCF方法在低频模式方面的局限性已得到部分消除。