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Orientational order and dynamics of interfacial water near a hexagonal boron-nitride sheet: An ab initio molecular dynamics study

机译:六角形氮化物片附近界面水分的定位阶和动态:AB Initio分子动力学研究

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摘要

Structural and dynamical properties of interfacial water molecules near a hexagonal boron nitride sheet (h-BN) are investigated by means of Born-Oppenheimer molecular dynamics simulations. Orientational profiles in the interfacial regions reveal two distinct types of water molecules near the BN surface. Depending on the positions of the water molecules, on top of either N or B atoms, one type contains water molecules that are oriented with one OH bond pointing toward the N atoms and the other type contains water molecules that remain parallel to the BN sheet. Distinct hydrogen bonding and stabilization energies of these two types of water molecules are found from our calculations. In order to see the effects of dispersion interactions, simulations are performed with the BLYP (Becke-Lee-Yang-Parr) functional and also BLYP with Grimme's D3 corrections (BLYP-D3). An enhancement of water ordering near the surface is observed with the inclusion of dispersion corrections. Further analysis of the diffusion coefficients, rotational time correlation functions, and hydrogen bond dynamics shows that water molecules near the h-BN sheet move faster compared to bulk water molecules both translationally and rotationally. The water molecules in the first layer are found to show substantial lateral diffusion. The escape dynamics of water from the solvation layer at the BN surface is also looked at in the current study. We have also investigated some of the electronic properties of interfacial water such as the charge density and dipole moment. It is found that the water molecules at the surface of the BN sheet have a lower dipole moment than bulk molecules. Published by AIP Publishing.
机译:通过出生 - oppenheimer分子动力学模拟研究了六边形氮化硼片(H-Bn)附近的界面水分子的结构和动态性质。界面区域中的方向谱揭示了BN表面附近的两个不同类型的水分子。取决于水分子的位置,在N或B原子的顶部上,一种类型含有用一个朝向N原子指向的一个OH键定向的水分子,另一种含有与BN片保持平行的水分子。从我们的计算中发现了这两种水分子的不同氢键和稳定能量。为了看到分散相互作用的影响,用BLYP(BECKE-LEE-yang-Parr)函数和GRIMME的D3校正(BLYP-D3)进行模拟。通过包含分散校正,观察到表面附近的水处序的增强。进一步分析扩散系数,旋转时间相关函数和氢键动力学表明,与平移和旋转相比,H-BN纸张附近的水分子与散装水分子相比移动得更快。发现第一层中的水分子显示出实质的横向扩散。目前的研究也研究了BN表面上的溶剂化层的逃逸动力学。我们还研究了界面水的一些电子性质,例如电荷密度和偶极矩。发现BN片材表面处的水分子具有比散装分子低的偶极矩。通过AIP发布发布。

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