首页> 外文期刊>Journal of chemical theory and computation: JCTC >Soft-Sphere Continuum Solvation in Electronic-Structure Calculations
【24h】

Soft-Sphere Continuum Solvation in Electronic-Structure Calculations

机译:电子结构计算中的软球连续溶解

获取原文
获取原文并翻译 | 示例
           

摘要

We present an implicit solvation approach where the interface-between the quantum-mechanical solute and the surrounding environment is, described by a fully continuous permittivity built up with atomic-centered "soft" spheres. This approach combines many of-the advantages the self-consistent continuum solvation model, in-handling solutes and surfaces in contact with complex dielectric environments or electrolytes in electronic-structure calculations. In addition it is able to describe accurately both neutral and charged systems. The continuous function, describing the variation of the permittivity, allows, to compute analytically the nonelectrostatic contributions to the solvation free energy that are described in terms of the quantum surface. The whole methodology is computationally stable, provides consistent energies and forces, and keeps the computational efforts and runtimes comparable to those of standard vacuum calculations. The capability to treat arbitrary molecular or slab-like geometries as well as charged Molecules is key to tackle electrolytes within mixed frameworks. We show that, with given, fixed atomic radii, two parameters are sufficient to give a mean absolute error of only 1.12 kcal/mol with respect to the experimental aqueous solvation energies for a set of 274 neutral solutes. For charged systems, the same set of parameters provides solvation energies for a set of 60 anions and 52 cations with an error of 2.96 and 2.13 kcal/mol, respectively, improving upon previous literature values. To tackle elements not present in most solvation databases, a new benchmark scheme On wettability and contact angles is proposed for solid-liquid interfaces and applied to the investigation of the stable terminations of a CdS (11 (2) over bar0) surface in an electrochemical medium.
机译:我们介绍了一种隐式溶剂化方法,其中界面 - 机械溶质和周围环境之间的界面 - 通过用原子为中心的“软”球体的完全连续介电常数来描述。这种方法结合了许多优点 - 在电子结构计算中与复杂的介电环境或电解质接触地接触的溶质和表面的许多优点。此外,它能够准确地描述中性和带电系统。连续功能,描述介电常数的变化,允许分析对量子表面描述的溶剂化自由能的非电解贡献。整个方法是计算稳定的,提供一致的能量和力量,并保持与标准真空计算的计算工作和运行次数。治疗任意分子或板状几何形状以及带电分子的能力是在混合框架内粘附电解质的关键。我们表明,通过给定的固定原子半径,两个参数足以给出一组274个中性溶质的实验性水性溶剂化能量的平均绝对误差仅为1.12千卡/摩尔。对于带电系统,相同的参数集提供了一组60个阴离子和52个阳离子的溶剂化能量,其中误差分别为2.96和2.13千卡/摩尔,从而改善以前的文献值。为了在大多数求解数据库中寻出不存在的元件,提出了一种新的基准测试润湿性和接触角的基准方案,用于固液界面,并应用于在电化学中的CDS(11(2)型)表面的稳定终止的研究中等的。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号