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The Mie-Grüneisen equation of state for metal nanoparticles

机译:金属纳米粒子的Mie-Grüneisen状态方程

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The Mie-Grüneisen equation is adapted for the description of the thermodynamic properties of nano-objects. It is shown that the Grüneisen parameter Γ depends on the ratio of the number of surface atoms to the number of interior atoms of the nano-objects. This ratio is determined by the characteristic size of nano-object and its form. It increases with decrease of the characteristic size. Reduction of the characteristic size of nano-objects that have a free surface, leads to a change in the Grüneisen parameter. If the nano-object is embedded in a matrix and has with it the coherent boundary, at the decrease of the nano-object size occurs either an increase or decrease of Γ. Compression or stretching of nano-objects may bring about a change of the ratio between numbers of the interior and surface atoms caused by changing the form of nano-objects. The change of the Grüneisen parameter at the characteristic size decreasing of a nano-object is treated as the change of a degree of the anharmonicity of lattice thermal vibrations. It is established that an appreciable change of Γ occurs if the characteristic radius of a nano-object is less than 5 nm.
机译:Mie-Grüneisen方程适用于描述纳米物体的热力学性质。结果表明,Grüneisen参数Γ取决于纳米物体的表面原子数与内部原子数之比。该比例取决于纳米物体的特征尺寸及其形式。随着特征尺寸的减小而增加。减小具有自由表面的纳米物体的特征尺寸会导致Grüneisen参数发生变化。如果将纳米物体嵌入到矩阵中并具有相干边界,则在纳米物体尺寸减小时,Γ会增大或减小。纳米物体的压缩或拉伸可引起由改变纳米物体的形式引起的内部原子数与表面原子数之比的变化。在纳米物体的特征尺寸减小时,Grüneisen参数的变化被视为晶格热振动非谐度的变化。已经确定,如果纳米物体的特征半径小于5nm,则发生明显的Γ变化。

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