Institute of Atomic and Molecular Physics, Key Laboratory of High Energy Density Physics and Technology, Ministry of Education, Sichuan University, Chengdu, 610065, People's Republic of China.
J Comput Chem. 2017 Apr 30;38(11):798-806. doi: 10.1002/jcc.24750.
Hydrogen-transfer reactions are an important class of reactions in many chemical and biological processes. Barrier heights of H-transfer reactions are underestimated significantly by popular exchange-correlation functional with density functional theory (DFT), while coupled-cluster (CC) method is quite expensive and can be applied only to rather small systems. Quantum Monte-Carlo method can usually provide reliable results for large systems. Performance of fixed-node diffusion quantum Monte-Carlo method (FN-DMC) on barrier heights of the 19 H-transfer reactions in the HTBH38/08 database is investigated in this study with the trial wavefunctions of the single-Slater-Jastrow form and orbitals from DFT using local density approximation. Our results show that barrier heights of these reactions can be calculated rather accurately using FN-DMC and the mean absolute error is 1.0 kcal/mol in all-electron calculations. Introduction of pseudopotentials (PP) in FN-DMC calculations improves efficiency pronouncedly. According to our results, error of the employed PPs is smaller than that of the present CCSD(T) and FN-DMC calculations. FN-DMC using PPs can thus be applied to investigate H-transfer reactions involving larger molecules reliably. In addition, bond dissociation energies of the involved molecules using FN-DMC are in excellent agreement with reference values and they are even better than results of the employed CCSD(T) calculations using the aug-cc-pVQZ basis set. © 2017 Wiley Periodicals, Inc.
氢转移反应是许多化学和生物过程中的一类重要反应。在密度泛函理论(DFT)中,流行的交换相关泛函显著低估了 H 转移反应的势垒高度,而耦合簇(CC)方法非常昂贵,只能应用于相当小的系统。量子蒙特卡罗方法通常可以为大系统提供可靠的结果。本研究用单 Slater-Jastrow 形式的试探波函数和 DFT 的轨道,对 HTBH38/08 数据库中 19 个 H 转移反应的固定节点扩散量子蒙特卡罗方法(FN-DMC)的势垒高度进行了研究,采用局部密度近似。我们的结果表明,FN-DMC 可以相当准确地计算这些反应的势垒高度,在全电子计算中平均绝对误差为 1.0 kcal/mol。在 FN-DMC 计算中引入赝势(PP)显著提高了效率。根据我们的结果,所采用的赝势的误差小于目前 CCSD(T)和 FN-DMC 计算的误差。因此,FN-DMC 可以使用赝势可靠地应用于研究涉及更大分子的 H 转移反应。此外,FN-DMC 计算的涉及分子的键离解能与参考值非常吻合,甚至优于采用 aug-cc-pVQZ 基组的所采用的 CCSD(T)计算的结果。©2017Wiley Periodicals,Inc.