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首页> 外文期刊>The Journal of Chemical Physics >A molecular dynamics simulation of the adsorption of water molecules surrounding an Au nanoparticle
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A molecular dynamics simulation of the adsorption of water molecules surrounding an Au nanoparticle

机译:纳米金粒子周围水分子吸附的分子动力学模拟

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This study uses molecular dynamics simulations performed in a parallel computing environment to investigate the adsorption of water molecules surrounding Au nanoparticles of various sizes.An observation of the oxygen and hydrogen atom distributions reveals that the adsorption of the water molecules creates two shell-like formations of water in close vicinity to the Au nanoparticle surface.These shell-like formations are found to be more pronounced around smaller Au nanoparticles.The rearrangement of water molecules in this region reduces the local hydrogen bond strength to below that which is observed in the bulk region.Finally,the simulation results indicate that the absolute value of the interaction energy between the water molecules and the Au nanoparticle is reduced when the water molecules surround a nanoparticle of larger diameter.This observation implies that a stronger adsorption effect exists between smaller Au nanoparticles and water molecules.Hence,the value of the adsorption constant increases for smaller Au nanoparticles.
机译:这项研究使用在并行计算环境中进行的分子动力学模拟研究了各种尺寸的Au纳米颗粒周围水分子的吸附情况。对氧和氢原子分布的观察表明,水分子的吸附会形成两个壳状的在Au纳米粒子表面附近的水。这些壳状的形成在较小的Au纳米粒子周围更明显。在此区域中水分子的重排将局部氢键强度降低到低于在本体区域中观察到的氢键强度。最后,模拟结果表明,当水分子包围较大直径的纳米粒子时,水分子与Au纳米粒子之间的相互作用能的绝对值减小,这表明较小的Au纳米粒子与Au纳米粒子之间存在较强的吸附作用。水分子。因此,吸附的价值对于较小的Au纳米粒子,n常数增加。

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