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用于最小能量路径计算的简单位置和方向预处理方案。

Simple position and orientation preconditioning scheme for minimum energy path calculations.

作者信息

Robertson Christopher, Habershon Scott

机构信息

Department of Chemistry and Centre for Scientific Computing, University of Warwick, Coventry, UK.

出版信息

J Comput Chem. 2021 Apr 30;42(11):761-770. doi: 10.1002/jcc.26495. Epub 2021 Feb 22.

DOI:10.1002/jcc.26495
PMID:33617652
Abstract

Minimum-energy path (MEP) calculations, such as those typified by the nudged elastic band method, require input of reactant and product molecular configurations at initialization. In the case of reactions involving more than one molecule, generating initial reactant and product configurations requires careful consideration of the relative position and orientations of the reactive molecules in order to ensure that the resulting MEP calculation proceeds without converging on an alternative reaction-path, and without requiring excessive numbers of optimization iterations; as such, this initial system set-up is most commonly performed "by hand," with an expert user arranging reactive molecules in space to ensure that the following MEP calculation runs smoothly. In this Article, we introduce a simple preconditioning scheme which replaces this labor-intensive, human-knowledge-based step with an automated deterministic computational scheme. In our approach, initial reactant and product configurations are generated such that steric hindrance between reactive molecules is minimized in the reactant and product configurations, while also simultaneously requiring minimal structural differences between the reactants and products. The method is demonstrated using a benchmark test-set of >3400 organic molecular reactions, where comparison of the reactant/product configurations generated using our approach compare very well to initial configurations which were generated on an ad hoc basis.

摘要

最小能量路径(MEP)计算,例如以推挤弹性带方法为代表的那些计算,在初始化时需要输入反应物和产物的分子构型。对于涉及多个分子的反应,生成初始反应物和产物构型需要仔细考虑反应性分子的相对位置和取向,以确保所得的MEP计算不会收敛到替代反应路径上,并且不需要过多的优化迭代;因此,这种初始系统设置最常见的是“手动”进行,由专业用户在空间中排列反应性分子,以确保后续的MEP计算顺利运行。在本文中,我们介绍了一种简单的预处理方案,该方案用自动确定性计算方案取代了这种劳动密集型、基于人类知识的步骤。在我们的方法中,生成初始反应物和产物构型,使得反应性分子之间的空间位阻在反应物和产物构型中最小化,同时还要求反应物和产物之间的结构差异最小。使用一个包含超过3400个有机分子反应的基准测试集对该方法进行了验证,将使用我们的方法生成的反应物/产物构型与临时生成的初始构型进行比较,结果非常理想。

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