首页> 外文期刊>Journal of computational and theoretical nanoscience >Size, Shape and Structure Dependent Cohesive Energy of Gold Nanoparticles: Empirical Many-Body Potential Energy Function Calculations
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Size, Shape and Structure Dependent Cohesive Energy of Gold Nanoparticles: Empirical Many-Body Potential Energy Function Calculations

机译:金纳米颗粒的尺寸,形状和结构依赖性粘性能量:经验许多身体势能功能计算

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摘要

A thermodynamic model based on an empirical many-body potential energy function is used, to investigate the stability and energetic features of gold nanoparticles as a function of both size and shape. The concept of a localized atomic bond for surface atoms, and a non-relaxed atomic bond for the interior atoms is used. Among the five different investigated shapes, the qualitative behaviour for the cohesive energy per atom of gold nanoparticles with size range 200 < n < 250 atoms is; sphere < cubic < truncated octahedron < cuboctahedron < octahedron. For the size range 250 < n < 400 atoms is; sphere < cubic < cuboctahedron < truncated octahedron < octahedron. For the size range 400 < n < 700 atoms, a phase transition between truncated octahedron and octahedron nanoparticles shapes is occurred and the general trend is; sphere < cuboctahedron < cubic < octahedron < truncated octahedron; whereas, for n > 1000 atoms, the general behaviour prefers; sphere < cubic < cuboctahedron < truncated octahedron < octahedron. On the other hand, the surface energy for gold nanoparticles is observed to be prominent in the nano-scale and it differs from shape to another, and falls down fast in the size range 200 < n < 1000 atoms having general trend; sphere < cubic < octahedron < truncated octahedron < cuboctahedron.
机译:使用基于经验许多身体势能功能的热力学模型,以研究金纳米颗粒的稳定性和精力充沛的特征作为尺寸和形状的函数。使用表面原子的局部原子键的概念,以及用于内部原子的非弛豫原子键。在五种不同的研究形状中,金纳米粒子的粘性能量的定性行为为200 1000原子,普遍行为更喜欢;球体<立方体

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