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通过路径积分分子动力学重新审视水 - 空气界面。

Water-air interface revisited by means of path-integral molecular dynamics.

作者信息

Creazzo Fabrizio, Luber Sandra

机构信息

Department of Chemistry, University of Zurich, Zurich, Switzerland.

出版信息

Phys Chem Chem Phys. 2024 Aug 7;26(31):21290-21302. doi: 10.1039/d4cp02500h.

Abstract

Although nuclear quantum effects (NQEs) have been considered on bulk liquid water, the impact of these latter on the air-water interface has not yet been reported. Herein, by performing and comparing molecular dynamics (AIMD) and path integral AIMD (PI-AIMD) simulations, we reveal the impact of NQEs on structural, dynamical and electronic properties as well as IR spectra of the air-water interface at room temperature. NQEs, being able to describe a more accurate proton delocalization in H-bonded system than AIMD, reveal a different structural arrangement and dynamical behaviour of both bulk and interfacial water molecules in comparison to AIMD results. A more de-structured and de-bound water arrangement and coordination are identified when the quantum nature of nuclei are considered for both bulk and interfacial water molecules. Structural properties, such as inter-/intra-molecular bond lengths, coordination numbers and H-bonding angles of bulk and interfacial water molecules here calculated, are affected by NQEs mitigating the overstructured description given by AIMD. Further evidences of an AIMD overstructured description of bulk water are in the computed IR spectra, where an increased absorption peak intensity and an increased strength of the hydrogen-bond network are alleviated by NQEs. In addition, NQEs show a valuable impact on the electronic structure of the air-water interface, reducing the total valence bandwidth and the electronic energy band-gap when passing from bulk to interfacial water. This work proves how NQEs significantly affect properties and features of the air-water interface, that are essential to accurately describe H-bonded interfacial systems.

摘要

尽管已经考虑了核量子效应(NQEs)对 bulk 液态水的影响,但这些效应在气-水界面上的影响尚未见报道。在此,通过进行和比较分子动力学(AIMD)和路径积分 AIMD(PI-AIMD)模拟,我们揭示了核量子效应在室温下对气-水界面的结构、动力学和电子性质以及红外光谱的影响。与 AIMD 相比,核量子效应能够在氢键体系中描述更精确的质子离域,揭示了 bulk 和界面水分子与 AIMD 结果相比不同的结构排列和动力学行为。当考虑 bulk 和界面水分子的核量子性质时,确定了一种更无序和更松散的水排列及配位情况。这里计算的 bulk 和界面水分子的结构性质,如分子间/分子内键长、配位数和氢键角,都受到核量子效应的影响,减轻了 AIMD 给出的过度结构化描述。在计算的红外光谱中也有进一步证据表明 AIMD 对 bulk 水的过度结构化描述,其中核量子效应减轻了吸收峰强度的增加和氢键网络强度的增加。此外,核量子效应显示出对气-水界面电子结构有重要影响,从 bulk 水到界面水时降低了总价带宽和电子能带隙。这项工作证明了核量子效应如何显著影响气-水界面的性质和特征,而这些对于准确描述氢键界面系统至关重要。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1a8a/11305098/6a1040e45c6d/d4cp02500h-f1.jpg

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