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首页> 外文期刊>The journal of physical chemistry, B. Condensed matter, materials, surfaces, interfaces & biophysical >An Improved Multistate Empirical Valence Bond Model for Aqueous Proton Solvation and Transport
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An Improved Multistate Empirical Valence Bond Model for Aqueous Proton Solvation and Transport

机译:改进的水质子溶剂化和输运的多态经验价键模型

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A new multistate empirical valence bond model (MS-EVB3) is developed for proton solvation and transport in aqueous solutions.The new model and its quantum version (qMS-EVB3) are based on the MS-EVB2 model [Day et al.,J.Chem.Phys.2002,117,5839] and recently developed flexible water models-the SPC/ Fw model [Wu et al.J.Chem.Phys.2006,124,24503] and the qSPC/Fw model [Paesani et al.J.Chem.Phys.2006,125,184507]-for classical and quantum simulations,respectively.Using ab initio data as benchmarks,the binding energies and optimized geometries calculated with the new model for protonated water clusters,as well as the potential energy surface for proton shuttling between water molecules in a cluster environment,are improved in comparison to the MS-EVB2 model.For aqueous solutions,classical and quantum molecular dynamics simulations with the MS-EVB3 model yield a more accurate description of the solvation structure and diffusive dynamics of the excess proton.New insight is also provided into the proton solvation and hopping dynamics in water,as well as the "amphiphilic" nature of the hydrated proton that has been predicted to give rise to its enhanced concentration at aqueous interfaces and an effectively lower pH of the air-water interface [Petersen et al.J.Phys.Chem.B 2004,108,14804].
机译:建立了一种新的多态经验价键模型(MS-EVB3),用于质子在水溶液中的溶剂化和传输。新模型及其量子形式(qMS-EVB3)基于MS-EVB2模型[Day等,J。 Chem.Phys.2002,117,5839]和最近开发的柔性水模型-SPC / Fw模型[Wu等人,J.Chem.Phys.2006,124,24503]和qSPC / Fw模型[Paesani等人[J.Chem.Phys.2006,125,184507]-分别用于经典和量子模拟。以从头算数据为基准,利用新模型计算的质子化水团簇的结合能和优化几何构型以及潜在的与MS-EVB2模型相比,改进了簇环境中水分子之间质子穿梭的能量表面。对于水溶液,使用MS-EVB3模型进行的经典和量子分子动力学模拟可以更准确地描述溶剂化结构和多余质子的扩散动力学。质子在水中的溶解和跳跃动力学,以及水合质子的“两亲”性质,据预测会增加其在水界面的浓度,并有效降低空气-水界面的pH [Petersen等[J.Phys.Chem.B 2004,108,14804]。

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