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首页> 外文期刊>Journal of chemical theory and computation: JCTC >Phase-Transferable Force Field for Alkali Halides
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Phase-Transferable Force Field for Alkali Halides

机译:碱卤化物的相转移力场

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A longstanding goal of computational chemistry is to predict the state of materials in all phases with a single model. This is particularly relevant for materials that are difficult or dangerous to handle or compounds that have not yet been created. Progress toward this goal has been limited, as most work has concentrated on just one phase, often determined by particular applications. In the framework of the development of the Alexandria force field, we present here new polarizable force fields for alkali halides with Gaussian charge distributions for molecular dynamics simulations. We explore different descriptions of the van der Waals interaction, like the commonly applied 12-6 Lennard-Jones (LJ), and compare it to "softer" ones, such as the 8-6 LJ, Buckingham, and a modified Buckingham potential. Our results for physicochemical properties of the gas, liquid, and solid phases of alkali halides are compared to experimental data and calculations with reference polarizable and nonpolarizable force fields. The new polarizable force field that employs a modified Buckingham potential predicts the tested properties for gas, liquid, and solid phases with a very good accuracy. In contrast to reference force fields, this model reproduces the correct crystal structures for all alkali halides at low and high temperature. Seeing that experiments with molten salts may be tedious due to high temperatures and their corrosive nature, the models presented here can contribute significantly to our understanding of alkali halides in general and melts in particular.
机译:计算化学的长期目标是通过单一模型预测所有阶段的材料状态。这对于难以或尚未创造的化合物难以或危险的材料特别相关。对于这一目标的进展受到限制,因为大多数工作都集中在一个阶段,通常由特定应用程序确定。在亚历山大力领域发展的框架中,我们在此提供用于碱卤化物的新可极化力场,具有用于分子动力学模拟的高斯电荷分布。我们探讨了范德华互动的不同描述,如常用的12-6 Lennard-jones(LJ),并将其与“更柔软”,如8-6 LJ,白金汉和改进的白金潜力。我们对碱卤化物的气体,液体和固相的物理化学性质的结果与参考可极化和非极化力场的实验数据和计算进行比较。采用改进的白金潜能的新可极化力场预测气体,液体和固相具有非常好的准确度的测试性质。与参考力场相比,该模型再现在低温和高温下的所有碱卤化物的正确晶体结构。由于高温和腐蚀性,看来,由于高温及其腐蚀性,看来,熔融盐的实验可能是乏味的,这里呈现的模型可以显着促进我们对碱卤化物的理解并特别融化。

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