首页> 外文期刊>Modern Physics Letters, B. Condensed Matter Physics, Statistical Physics, Applied Physics >Surface effects on the statistics of the local density of states in metallic nanoparticles: Manifestation on the NMR spectra
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Surface effects on the statistics of the local density of states in metallic nanoparticles: Manifestation on the NMR spectra

机译:表面效应对金属纳米粒子中状态局部密度统计的影响:NMR谱的表现

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摘要

In metallic nanoparticles, shifts in the ionization energy of surface atoms with respect to bulk atoms can lead to surface bands. Within a simple Tight Binding model we find that the projection of the electronic density of states on these sites presents two overlapping structures. One of them is characterized by the level spacing coming from bulk states and the other arises from the surface states. In very small particles, this effect contributes to an over-broadening of the NMR absorption spectra, determined by the Knight shift distribution of magnetic nuclei. We compare our calculated Knight shifts with experiments on aluminum nanoparticles, and show that the deviation of the scaling law as a function of temperature and particle size can be explained in terms of surface states.
机译:在金属纳米粒子中,表面原子的电离能相对于本体原子的移动会导致表面能带。在简单的紧束缚模型中,我们发现这些位置上状态的电子密度的投影呈现出两个重叠的结构。其中之一的特征是位空间间距来自体态,而另一位则来自表面态。在很小的颗粒中,这种效应会导致NMR吸收光谱的过度展宽,这是由磁核的奈特位移分布决定的。我们将我们计算出的奈特位移与铝纳米颗粒上的实验进行了比较,结果表明,可以根据表面状态解释结垢定律作为温度和粒径的函数的偏差。

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