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Adsorption mechanism of water molecules surrounding Au nanoparticles of different sizes

机译:不同大小金纳米粒子周围水分子的吸附机理

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Molecular dynamic simulation is used to investigate the adsorption mechanism of water molecules surrounding Au nanoparticles with different sizes. Our results show that the adsorption mechanism of the water molecules in the first water shell will be influenced by the size of the Au nanoparticle. For the larger Au nanoparticles, the hydrogen bonding of water molecules adsorbed on the surface of the Au nanoparticles are arranged in a two-dimensional structure, while those adsorbed on the edge of the surface of the Au nanoparticles are arranged in a three-dimensional structure. However, in the case of the smallest Au nanoparticle, the hydrogen bonding of the water molecules on the first adsorbed layer are arranged only in a three-dimensional structure. The arrangement of the water molecules in the first water shell can be determined by orientation order parameter. The water molecules that adsorb on the larger Au nanoparticles tend to arrange in an irregular arrangement, while those adsorbed on the smallest Au nanoparticle tend to arrange a regular arrangement. Interestingly, the water molecules adsorbed on the smallest nanoparticle are arranged in a bulklike structure in the first shell. (c) 2008 American Institute of Physics.
机译:利用分子动力学模拟研究了不同大小金纳米颗粒周围水分子的吸附机理。我们的结果表明,第一个水壳中水分子的吸附机理将受到Au纳米颗粒尺寸的影响。对于较大的Au纳米颗粒,吸附在Au纳米颗粒表面的水分子的氢键以二维结构排列,而吸附在Au纳米颗粒表面边缘的水分子的三维结构。 。然而,在最小的Au纳米粒子的情况下,第一吸附层上的水分子的氢键仅以三维结构排列。可以通过取向顺序参数确定第一水壳中水分子的排列。吸附在较大的Au纳米颗粒上的水分子倾向于以不规则排列排列,而吸附在最小的Au纳米颗粒上的水分子倾向于以规则排列排列。有趣的是,吸附在最小纳米颗粒上的水分子在第一壳中以块状结构排列。 (c)2008年美国物理研究所。

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