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用于半经验方法的扩展类导体极化连续介质溶剂化模型(CPCM-X)

Extended Conductor-like Polarizable Continuum Solvation Model (CPCM-X) for Semiempirical Methods.

作者信息

Stahn Marcel, Ehlert Sebastian, Grimme Stefan

机构信息

Mulliken Center of Theoretical Chemistry, 53115 Bonn, Germany.

Microsoft Research AI4Science, 1118 CZ Schiphol, Netherlands.

出版信息

J Phys Chem A. 2023 Aug 24;127(33):7036-7043. doi: 10.1021/acs.jpca.3c04382. Epub 2023 Aug 11.

Abstract

We have developed a new method to accurately account for solvation effects in semiempirical quantum mechanics based on a polarizable continuum model (PCM). The extended conductor-like polarizable continuum model (CPCM-X) incorporates a computationally efficient domain decomposition conductor-like screening model (ddCOSMO) for extended tight binding (xTB) methods and uses a post-processing approach based on established solvation models, like the conductor-like screening model for real solvents (COSMO-RS) and the universal solvent model based on solute electron density (SMD). According to various benchmarks, the approach performs well across a broad range of systems and applications, including hydration free energies, non-aqueous solvation free energies, and large supramolecular association reactions of neutral and charged species. Our method for computing solvation free energies is much more accurate than the current methods in the xtb program package. It improves the accuracy of solvation free energies by up to 40% for larger supramolecular association reactions to match even the accuracy of higher-level DFT-based solvation models like COSMO-RS and SMD while being computationally more than 2 orders of magnitude faster. The proposed method and the underlying ddCOSMO model are readily available for a wide variety of solvents and are accessible in xtb for use in various computational applications.

摘要

我们基于可极化连续介质模型(PCM)开发了一种新方法,用于在半经验量子力学中精确考虑溶剂化效应。扩展的类导体可极化连续介质模型(CPCM-X)为扩展紧束缚(xTB)方法纳入了一种计算效率高的区域分解类导体屏蔽模型(ddCOSMO),并采用基于已确立的溶剂化模型的后处理方法,如实溶剂类导体屏蔽模型(COSMO-RS)和基于溶质电子密度的通用溶剂模型(SMD)。根据各种基准测试,该方法在广泛的系统和应用中表现良好,包括水合自由能、非水溶剂化自由能以及中性和带电物种的大型超分子缔合反应。我们计算溶剂化自由能的方法比xtb程序包中的当前方法精确得多。对于更大的超分子缔合反应,它将溶剂化自由能的精度提高了高达40%,甚至能与像COSMO-RS和SMD这样基于更高水平密度泛函理论(DFT)的溶剂化模型的精度相匹配,同时计算速度快了2个多数量级。所提出的方法和基础的ddCOSMO模型适用于多种溶剂,可在xtb中获取,用于各种计算应用。

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