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用于计算小水簇、氨簇和氟化氢簇中多个质子交换的势垒高度及络合能的扩散蒙特卡罗方法。

Diffusion Monte Carlo method for barrier heights of multiple proton exchanges and complexation energies in small water, ammonia, and hydrogen fluoride clusters.

作者信息

Zhou Xiaojun, Huang Zhiru, He Xiao

机构信息

Shanghai Engineering Research Center of Molecular Therapeutics and New Drug Development, Shanghai Frontiers Science Center of Molecule Intelligent Syntheses, School of Chemistry and Molecular Engineering, East China Normal University, Shanghai 200062, People's Republic of China.

School of Physics & Information Science, Shaanxi University of Science and Technology, Xi'an 710021, People's Republic of China.

出版信息

J Chem Phys. 2024 Feb 7;160(5). doi: 10.1063/5.0182164.

Abstract

Proton exchange reactions are of key importance in many processes in water. However, it is nontrivial to achieve reliable barrier heights for multiple proton exchanges and complexation energies in hydrogen-bonded systems theoretically. Performance of the fixed-node diffusion quantum Monte Carlo (FN-DMC) with the single-Slater-Jastrow trial wavefunction on total energies, barrier heights of multiple proton exchanges, and complexation energies of small water, ammonia, and hydrogen fluoride clusters is investigated in this study. Effects of basis sets and those of locality approximation (LA), T-move approximation (T-move), and determinant localization approximation (DLA) schemes in dealing with the nonlocal part of pseudopotentials on FN-DMC results are evaluated. According to our results, diffuse basis functions are important in achieving reliable barrier heights and complexation energies with FN-DMC, although the cardinal number of the basis set is more important than diffuse basis functions on total energies of these systems. Our results also show that the time step bias with DLA and LA is smaller than T-move; however, the time step bias of DMC energies with respect to time steps using the T-move is roughly linear up to 0.06 a.u., while this is not the case with LA and DLA. Barrier heights and complexation energies with FN-DMC using these three schemes are always within chemical accuracy. Taking into account the fact that T-move and DLA are typically more stable than LA, FN-DMC calculations with the T-move or DLA scheme and basis sets containing diffuse basis functions are suggested for barrier heights of multiple proton exchanges and complexation energies of hydrogen-bonded clusters.

摘要

质子交换反应在水中的许多过程中至关重要。然而,从理论上获得氢键体系中多次质子交换的可靠势垒高度和络合能并非易事。本研究考察了采用单斯莱特 - 贾斯特罗试探波函数的固定节点扩散量子蒙特卡罗方法(FN - DMC)对总能量、多次质子交换的势垒高度以及小水簇、氨簇和氟化氢簇的络合能的计算性能。评估了基组的影响以及在处理赝势非局域部分时局域近似(LA)、T 移动近似(T - move)和行列式局域近似(DLA)方案对 FN - DMC 结果的影响。根据我们的结果,弥散基函数对于用 FN - DMC 获得可靠的势垒高度和络合能很重要,尽管基组的基数对这些体系的总能量比弥散基函数更重要。我们的结果还表明,DLA 和 LA 的时间步长偏差小于 T - move;然而,使用 T - move 时 DMC 能量相对于时间步长的时间步长偏差在高达 0.06 原子单位时大致呈线性,而 LA 和 DLA 并非如此。使用这三种方案的 FN - DMC 计算得到的势垒高度和络合能始终在化学精度范围内。考虑到 T - move 和 DLA 通常比 LA 更稳定,建议使用 T - move 或 DLA 方案以及包含弥散基函数的基组进行 FN - DMC 计算,以获得多次质子交换的势垒高度和氢键簇的络合能。

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