首页> 外文期刊>The journal of physical chemistry, B. Condensed matter, materials, surfaces, interfaces & biophysical >What Coordinate Best Describes the Affinity of the Hydrated Excess Proton for the Air-Water Interface?
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What Coordinate Best Describes the Affinity of the Hydrated Excess Proton for the Air-Water Interface?

机译:什么坐标最能描述水合过量质子对空水界面的亲和力?

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Molecular dynamics simulations and free energy sampling are employed in this work to investigate the surface affinity of the hydrated excess proton with two definitions of the interface: The Gibbs dividing interface (GDI) and the Willard-Chandler interface (WCI). Both the multistate empirical valence bond (MS-EVB) reactive molecular dynamics method and the density functional theory-based ab initio molecular dynamics (AIMD) were used to describe the hydrated excess proton species, including "vehicular" (standard diffusion) transport and (Grotthuss) proton hopping transport and associated structures of the hydrated excess proton net positive charge defect. The excess proton is found to exhibit a similar trend and quantitative free energy behavior in terms of its surface affinity as a function of the GDI or WCI. Importantly, the definitions of the two interfaces in terms of the excess proton charge defect are highly correlated and far from independent of one another, thus undermining the argument that one interface is superior to the other when describing the proton interface affinity. Moreover, the hydrated excess proton and its solvation shell significantly influence the location and local curvature of the WCI, making it difficult to disentangle the interfacial thermodynamics of the excess proton from the influence of that species on the instantaneous surface curvature.
机译:在这项工作中采用分子动力学模拟和自由能量采样,以研究水合过量质子的表面亲和力与界面的两个定义:GIBBS划分界面(GDI)和WILLARD-Chandler接口(WCI)。多岩经验价键(MS-EVB)反应性分子动力学方法和密度泛函理论的AB INITIO分子动力学(AIMD)用于描述水合过量的质子物种,包括“车辆”(标准扩散)运输和( Grotthsts)质子跳跃运输和相关的水合过量质子净正电荷缺陷的相关结构。发现过量的质子在其表面亲和力方面表现出类似的趋势和定量的自由能行为,作为GDI或WCI的函数。重要的是,在过量的质子电荷缺陷方面,两个接口的定义高度相关,远离彼此的独立,从而破坏了一个接口在描述质子接口亲和力时优于另一个接口的参数。此外,水合过量的质子及其溶剂化壳显着影响了WCI的位置和局部曲率,使得难以解开过量质子的界面热力学从该物种对瞬时表面曲率的影响。

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