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Re-examining the properties of the aqueous vapor-liquid interface using dispersion corrected density functional theory

机译:使用分散校正密度泛函理论重新检查水蒸气-液体界面的性质

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摘要

First-principles molecular dynamics simulations, in which the forces are computed from electronic structure calculations, have great potential to provide unique insight into structure, dynamics, electronic properties, and chemistry of interfacial systems that is not available from empirical force fields. The majority of current first-principles simulations are driven by forces derived from density functional theory with generalized gradient approximations to the exchange-correlation energy, which do not capture dispersion interactions. We have carried out first-principles molecular dynamics simulations of air-water interfaces employing a particular generalized gradient approximation to the exchange-correlation functional (BLYP), with and without empirical dispersion corrections. We assess the utility of the dispersion corrections by comparison of a variety of structural, dynamic, and thermodynamic properties of bulk and interfacial water with experimental data, as well as other first-principles and force field-based simulations.
机译:第一性原理的分子动力学模拟,其中的力是通过电子结构计算来计算的,具有很大的潜力,可以提供对结构,动力学,电子特性和界面系统化学性质的独特见解,而经验力场无法提供这种界面。当前大多数的第一性原理模拟都是由密度泛函理论得出的力所驱动,这些力具有与交换相关能量的广义梯度近似,但不能捕获色散相互作用。我们已经对空气-水界面进行了第一性原理的分子动力学模拟,使用了具有和不具有经验色散校正的交换相关函数(BLYP)的特定广义梯度近似。我们通过比较散装和界面水的各种结构,动力学和热力学特性与实验数据以及其他基于第一原理和力场的模拟来评估色散校正的效用。

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