标题: H2–HCl 凡德瓦错合物之全初始化互相作用能曲面
An ab initio interaction energy surface of the H2–HCl van der Waals complex
作者: 李彦廷
Li, Yen-Ting
魏恒理
Witek, Henryk
应用化学系分子科学硕博士班
关键字: 互相作用能;势能面;凡德瓦错合物;Interaction energy;Potential energy surface;van der Waals' complexes
公开日期: 2013
摘要: 一个六维H2–HCl错合物之分子间互相作用能曲面已被提出。全初始化计算点完成于六维的网格,包含了H–Cl及H–H 距离的相关。首先,利用高效率明确相关耦合簇超分子方法(efficient explicitly correlated coupled-cluster supermolecular method (CCSD(T)-F12b)) 及大基底函数组,通过外插法计算出互相作用能。接着,三重迭代及四重非迭代激发贡献,由较小的基底函数组计算得出并且加入。此研究中也包含了内层电子互相作用及相对论修正。所得到的互相作用能接着对HCl及H2之基态振动波函数进行平均。
由此进行解析拟合,产生四维势能面。在势能井,对应到真实完整基底函数组的不确定性小于0.6波数。藉由我们提出的两步拟合,势能面的形貌及能量皆能正确地呈现。拟合步骤在势能井最大误差及平均误差分别为0.47cm-1及0.0066 cm-1。拟合使用简单的三角函数。这些简单的三角函数在未来工作中容易进行操作。相似的互相作用能曲面可以依照本论文中所发展的方法来产生。
A six-dimensional intermolecular potential energy surfaces for the H2–HCl complex is presented. The ab initio points have been computed on a six-dimensional grid including the dependence on the H–Cl and H–H separations. The interaction energies were first calculated using the efficient explicitly correlated coupled-cluster supermolecular method (CCSD(T)-F12b) with large basis sets, followed by an extrapolation procedure. Next, a contribution from iterative triple and noniterative quadruple excitations was added from calculations in smaller basis sets. The core electron correlation and relativistic correction were also included. The resulting interaction energies were then averaged over the vibrational ground-state wave functions of HCl and H2.
The final four-dimensional potential energy surfaces were fitted by analytic expressions. In the potential well, the uncertainty corresponding to the true complete basis set limit is less than 0.6 cm-1. We proposed a two-step fitting procedure which reproduced well both the correct shape of the whole potential energy surface and interaction energy itself. The maximum error of the fitting in the attractive part of potential is 0.47 cm-1 and the mean error is 0.0066 cm-1. The simple trigonometric functions were used which are easy to manipulate in future work. Similar interaction energy surface can be produced based on methodology developed in presented Thesis.
URI: http://140.113.39.130/cdrfb3/record/nctu/#GT070052405
http://hdl.handle.net/11536/74183
显示于类别:Thesis


文件中的档案:

  1. 240501.pdf

If it is a zip file, please download the file and unzip it, then open index.html in a browser to view the full text content.