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Size- and shape-dependent surface thermodynamic properties of nanocrystals

机译:纳米晶体的尺寸和形状依赖性表面热力学性质

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摘要

As the fundamental properties, the surface thermodynamic properties of nanocrystals play a key role in the physical and chemical changes. However, it remains ambiguous about the quantitative influence regularities of size and shape on the surface thermodynamic properties of nanocrystals. Thus by introducing interface variables into the Gibbs energy and combining Young-Laplace equation, relations between the surface thermodynamic properties (surface Gibbs energy, surface enthalpy, surface entropy, surface energy and surface heat capacity), respectively, and size of nanocrystals with different shapes were derived. Theoretical estimations of the orders of the surface thermodynamic properties of nanocrystals agree with available experimental values. Calculated results of the surface thermodynamic properties of Au, Bi and Al nanocrystals suggest that when r 10 nm, the surface thermodynamic properties linearly vary with the reciprocal of particle size, and when r 10 nm, the effect of particle size on the surface thermodynamic properties becomes greater and deviates from linear variation. For nanocrystals with identical equivalent diameter, the more the shape deviates from sphere, the larger the surface thermodynamic properties (absolute value) are.
机译:作为基本性质,纳米晶体的表面热力学性质在物理和化学变化中起着关键作用。然而,它对纳米晶体表面热力学性质的大小和形状的定量影响规则仍然存在暧昧。因此,通过将界面变量引入GIBBS能量并结合幼拉方程,分别与不同形状的纳米晶体的表面热力学性质(表面凸起能量,表面焓,表面热容,表面能和表面热容)之间的关系派生。纳米晶体表面热力学性能令的理论估计与可用的实验值同意。计算Au,Bi和Al纳米晶体表面热力学性质的计算结果表明,当R>时; 10 nm,表面热力学性能随粒径的往复运动而线性变化,当r& 10nm,粒度对表面热力学性质的影响变大并偏离线性变化。对于具有相同等效直径的纳米晶体,形状越偏离球体,表面热力学性质(绝对值)越大。

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