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首页> 外文期刊>The Journal of Chemical Physics >Comparing polarizable force fields to ab initio calculations reveals nonclassical effects in condensed phases
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Comparing polarizable force fields to ab initio calculations reveals nonclassical effects in condensed phases

机译:比较极化力场和从头算计算,发现凝聚相中的非经典效应

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摘要

In a recent work [Giese and York J.Chem.Phys.120,9903(2004)] showed that many-body force field models based solely on pairwise Coulomb screening cannot simultaneously reproduce both gas-phase and condensed-phase polarizability limits.In particular,polarizable force fields applied to bifurcated water chains have been demonstrated to be overpolarized with respect to ab initio methods.This behavior was ascribed to the neglect of coupling between many-body exchange and polarization.In the present article we reproduce those results using different ab initio levels of theory and a polarizable model based on the chemical-potential equalization principle.Moreover we show that,when hydrogen-bond(H-bond)forming systems are considered,an additional nonclassical effect,i.e.,intermolecular charge transfer,must be taken into account.Such effect,contrarily to that of coupling between many-body exchange and polarization,makes classical polarizable force fields underpolarized.In the case of water at standard conditions,being H-bonded geometries much more probable than the bifurcated ones,intermolecular charge transfer is the dominant effect.
机译:在最近的工作中[Giese and York J.Chem.Phys.120,9903(2004)]显示,仅基于成对库仑筛选的多体力场模型不能同时重现气相和凝聚相的极化率极限。特别是,从头算的方法,已经证明了施加到分叉水链上的极化力场是超极化的。此行为归因于忽略了多体交换和极化之间的耦合。在本文中,我们使用不同的方法重现了这些结果。从头开始计算,并基于化学势均化原理建立了极化模型。此外,我们表明,当考虑氢键(H键)形成系统时,还必须具有附加的非经典效应,即分子间电荷转移与多体交换和极化之间的耦合相反,这种效应使经典的极化力场发生了极化。在标准条件下,由于分子间的电荷转移是支配分子的原因,因此与分叉的分子相比,氢键结合的几何体的可能性更大。

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