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Critical assessment of Pt surface energy - An atomistic study

机译:铂表面能的临界评估-原子研究

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Despite the fact that surface energy is a fundamental quantity in understanding surface structure of nanoparticle, the results of experimental measurements and theoretical calculations for the surface energy of pure Pt show a wide range of scattering. It is necessary to further ensure the surface energy of Pt to find the equilibrium shape and atomic configuration in Pt bimetallic nanoparticles accurately. In this article, we critically assess and optimize the Pt surface energy using a semi-empirical atomistic approach based on the second nearest-neighbor modified embedded-atom method interatomic potential. That is, the interatomic potential of pure Pt was adjusted in a way that the surface segregation tendency in a wide range of Pt binary alloys is reproduced in accordance with experimental information. The final optimized Pt surface energy (mJ/m(2)) is 2036 for (100) surface, 2106 for (110) surface, and 1502 for (111) surface. The potential can be utilized to find the equilibrium shape and atomic configuration of Pt bimetallic nanoparticles more accurately. (C) 2017 Elsevier B.V. All rights reserved.
机译:尽管表面能是理解纳米颗粒表面结构的基本量,但是纯Pt表面能的实验测量和理论计算结果显示出很大的散射范围。有必要进一步确保Pt的表面能,以准确找到Pt双金属纳米粒子的平衡形状和原子构型。在本文中,我们基于第二近邻改进的嵌入式原子方法原子间电势,使用半经验原子方法严格评估和优化Pt表面能。即,以根据实验信息再现大范围的Pt二元合金中的表面偏析倾向的方式调整纯Pt的原子间电位。最终优化的Pt表面能(mJ / m(2))对于(100)表面为2036,对于(110)表面为2106,对于(111)表面为1502。可以利用电势更准确地找到Pt双金属纳米粒子的平衡形状和原子构型。 (C)2017 Elsevier B.V.保留所有权利。

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