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用于水及其他体系的简单且精确的单体能量和偶极矩曲面

Simple and Accurate One-Body Energy and Dipole Moment Surfaces for Water and Beyond.

作者信息

Sami Selim, LaCour R Allen, Heindel Joseph P, Head-Gordon Teresa

机构信息

Kenneth S. Pitzer Theory Center and Department of Chemistry, University of California, Berkeley, Berkeley, California 94720, United States.

Chemical Sciences Division, Lawrence Berkeley National Laboratory, Berkeley, California 94720, United States.

出版信息

J Phys Chem Lett. 2024 Jul 4;15(26):6712-6721. doi: 10.1021/acs.jpclett.4c00587. Epub 2024 Jun 20.

Abstract

Water is often the testing ground for new, advanced force fields. While advanced functional forms for intermolecular interactions have been integral to the development of accurate water models, less attention has been paid to a transferable model for intramolecular valence terms. In this work, we present a one-body energy and dipole moment surface model, named 1B-UCB, that is simple yet accurate and can be feasibly adapted for both standard and advanced potentials. 1B-UCB for water is comparable in accuracy to those with much more complex functional forms, despite having drastically fewer parameters. The parametrization protocol has been implemented as part of the Q-Force automated workflow and requires only a quantum mechanical Hessian calculation as reference data, hence allowing it to be easily extended to a variety of molecular systems beyond water, which we demonstrate on a selection of small molecules with different symmetries.

摘要

水常常是新型先进力场的试验场。虽然分子间相互作用的先进函数形式对于精确水模型的发展不可或缺,但对于分子内价键项的可转移模型关注较少。在这项工作中,我们提出了一种单体能量和偶极矩表面模型,名为1B-UCB,它简单却精确,并且可以 feasibly 适用于标准和先进的势。用于水的1B-UCB尽管参数大幅减少,但其精度与具有更复杂函数形式的模型相当。参数化协议已作为Q-Force自动化工作流程的一部分实施,并且只需要量子力学海森矩阵计算作为参考数据,因此可以轻松扩展到水以外的各种分子系统,我们在一些具有不同对称性的小分子上进行了演示。 (注:“feasibly”此处可能有误,推测可能是“flexibly”灵活地,若按此修改后译文为:水常常是新型先进力场的试验场。虽然分子间相互作用的先进函数形式对于精确水模型的发展不可或缺,但对于分子内价键项的可转移模型关注较少。在这项工作中,我们提出了一种单体能量和偶极矩表面模型,名为1B-UCB,它简单却精确,并且可以灵活地适用于标准和先进的势。用于水的1B-UCB尽管参数大幅减少,但其精度与具有更复杂函数形式地模型相当。参数化协议已作为Q-Force自动化工作流程的一部分实施,并且只需要量子力学海森矩阵计算作为参考数据,因此可以轻松扩展到水以外的各种分子系统,我们在一些具有不同对称性的小分子上进行了演示。 )

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7093/11229074/890b1cbc7c79/jz4c00587_0001.jpg

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