形式主义(音乐)
溶剂化
电介质
缩放比例
极化连续介质模型
导线
边值问题
离子键合
量子化学
介电响应
计算化学
化学
统计物理学
物理
量子力学
材料科学
数学
分子
离子
音乐剧
艺术
复合材料
视觉艺术
几何学
作者
Andreas Klamt,Cristian Moya,José Palomar
标识
DOI:10.1021/acs.jctc.5b00601
摘要
Dielectric continuum models are popular for modeling solvent effects in quantum chemical calculations. The polarizable continuum model (PCM) was originally published exploiting the exact dielectric boundary condition. This is nowadays called DPCM. The conductor-like screening model (COSMO) introduced a simplified and slightly empirical scaled conductor boundary condition, which turned out to reduce the errors resulting from outlying charge. This was implemented in PCM as CPCM. Later, the integral equation formalism (IEFPCM) and the formally identical SS(V)PE model of Chipman introduced a modified dielectric boundary condition combining the dielectric exactness of DPCM with the reduced outlying charge sensitivity of COSMO. In this paper, we demonstrate on two huge data sets of neutral and ionic solutes that no significant difference can be observed between the COSMO and IEFPCM, if the correct scaling factor is chosen for COSMO.
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