Xie Daiqian, Xu Chuanxiu, Ho Tak-San, Rabitz Herschel, Lendvay György, Lin Shi Ying, Guo Hua
Institute of Theoretical and Computational Chemistry, Key Laboratory of Mesoscopic Chemistry, School of Chemistry and Chemical Engineering, Nanjing University, Nanjing 210093, China.
J Chem Phys. 2007 Feb 21;126(7):074315. doi: 10.1063/1.2446994.
Two global analytical potential energy surfaces for the HO2(X2A") system have been developed by fitting approximately 15,000 ab initio points at the icMRCI+Qaug-cc-pVQZ level of theory, using the reproducing kernel Hilbert space method. One analytical potential is designed to give a very accurate representation of the low energy range that determines the vibrational spectrum, while the other attempts to provide a fast and uniformly accurate potential function for reaction dynamics. The quality of the fitted potential functions is confirmed by good agreement of the (J=0) HO2 vibrational spectrum and (J=0) quantum reaction probability for the H+O2(ji=0,nui=0) reaction with those obtained using the spline fitted potential. Quasiclassical trajectory calculations carried out on the new potential energy surface provided the reaction probability with a zero impact parameter (b=0), which is in reasonably good agreement with the J=0 quantum results.
通过使用再生核希尔伯特空间方法,在icMRCI+Qaug-cc-pVQZ理论水平上拟合大约15000个从头算点,已经开发出了HO2(X2A")体系的两个全局分析势能面。一个分析势能旨在非常精确地表示决定振动光谱的低能量范围,而另一个则试图为反应动力学提供一个快速且均匀精确的势能函数。通过将(J=0) HO2振动光谱和H+O2(ji=0,nui=0)反应的(J=0)量子反应概率与使用样条拟合势能得到的结果进行良好对比,证实了拟合势能函数的质量。在新的势能面上进行的准经典轨迹计算给出了零碰撞参数(b=0)时的反应概率,这与J=0量子结果相当吻合。