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首页> 外文期刊>The Journal of Chemical Physics >ANALYTICAL FIRST AND SECOND ENERGY DERIVATIVES OF THE GENERALIZED CONDUCTORLIKE SCREENING MODEL FOR FREE ENERGY OF SOLVATION
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ANALYTICAL FIRST AND SECOND ENERGY DERIVATIVES OF THE GENERALIZED CONDUCTORLIKE SCREENING MODEL FOR FREE ENERGY OF SOLVATION

机译:求解自由能的广义导电样筛查模型的解析第一和第二能量导数

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We present analytical expressions for the first and second energy derivatives of our recently proposed generalized conductorlike screening model (GCOSMO) for free energy of solvation of solute in an arbitrary shape cavity. An application to study hydration effects on structure and stability of glycine zwitterion in aqueous solution is also presented. These calculations were carried out at the Hartree-Fock, second-order Moller-Plesset perturbation theory and different nonlocal density functional theory levels using the 6-31G(d,p) basis set. We found that our quantum mechanical GCOSMO solvation model costs from 10% to 40% extra cpu time per one Berny optimization step compared to the gas-phase calculations for different levels of theory. For the glycine system, the optimized zwitterionic structure in aqueous solution agrees very well with experimental crystal structure and the enthalpy change for transfering glycine from the gas phase to the aqueous solution is also in excellent agreement with experimental data, The ''single point'' approach, which has been used in the past, yields erroneous results. The efficiency and accuracy of our GCOSMO solvation model indicate that this model can be a practical tool for studying structure and activity of moderately large biological systems in solutions. (C) 1995 American Institute of Physics. [References: 66]
机译:我们为任意形状的腔中溶质的自由溶剂化提供了我们最近提出的广义导体样筛选模型(GCOSMO)的一阶和二阶能量导数的解析表达式。还提出了研究水合对水溶液中甘氨酸两性离子结构和稳定性的影响的应用。这些计算是使用6-31G(d,p)基集在Hartree-Fock,二阶Moller-Plesset微扰理论和不同的非局部密度泛函理论水平下进行的。我们发现,相对于不同理论水平的气相计算,我们的量子力学GCOSMO溶剂化模型每花费一个Berny优化步骤就要花费10%到40%的额外CPU时间。对于甘氨酸系统,水溶液中优化的两性离子结构与实验晶体结构非常吻合,将甘氨酸从气相转移到水溶液中的焓变也与实验数据非常吻合,``单点''过去使用过的方法产生错误的结果。我们的GCOSMO溶剂化模型的效率和准确性表明,该模型可以作为研究溶液中中等大小生物系统的结构和活性的实用工具。 (C)1995年美国物理研究所。 [参考:66]

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