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基于电子平均自由程的金属纳米颗粒临界尺寸估算
Estimation of Critical Size of Metal Nanoparticles Based on Electron Mean Free Path
【摘要】 基于金属价电子占据k空间体积与布里渊区体积之间的关系,求出费米球半径,导出电子平均自由程的计算公式。以Ag和Cu为例计算出电子平均自由程,与其他方法计算结果一致。当金属材料的几何尺度与电子平均自由程相当时,与之相关的物理性能会发生显著变化,从这个角度出发,用电子平均自由程尺度估算Ag和Cu的纳米尺寸临界值分别为52 nm和39 nm。这种计算思路同样适用于其他金属纳米材料。
【Abstract】 Based on the relationship between the volume of metal valence electrons occupying k space and the volume of the Brillouin zone, the radius of the Fermi sphere was calculated, and the formula for calculating electron mean free path was derived.Taking Ag and Cu as examples, the electron mean free path was calculated, which was consistent with the results obtained by other methods.When the geometric scale of metal materials was equivalent to the electron mean free path, the physical properties related to it would undergo significant changes.From this perspective, the critical values of Ag and Cu nano size were estimated using the average free path scale of electrons to be 52 nm and 39 nm, respectively.This calculation approach was also applicable to other metal nanomaterials.
【Key words】 metal nanoparticles; critical dimensions; electron mean free path;
- 【文献出处】 大学物理实验 ,Physical Experiment of College , 编辑部邮箱 ,2024年02期
- 【分类号】TB383.1;TG14
- 【下载频次】21