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Quantum Size Effect on Band Gap and Effective Mass of ZnS Nano-Particle

机译:量子尺寸对ZnS纳米粒子带隙和有效质量的影响

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In this paper, we calculate the band gap of ZnS nanoparticle and show that it increases with decreasing its size. The simplest way for discussing this phenomenon and finding the band gap for different sizes is to use effective mass approximation. We show this method isn't useful for smaller sizes than 2.5 A because the effective mass of particles below 2.5 A also depends on the size. The density functional theory was used to obtain the band gap of ZnS nanoparticle. This theory also be used for determine the effective mass for various particle size. We find equation that shown variation effective mass for various particle sizes of ZnS. This equation fit with experimental results.
机译:在本文中,我们计算了ZnS纳米粒子的带隙,并显示其随着尺寸减小而增加。讨论此现象并找到不同尺寸的带隙的最简单方法是使用有效的质量近似。我们显示此方法不适用于小于2.5 A的尺寸,因为小于2.5 A的颗粒的有效质量还取决于尺寸。利用密度泛函理论获得了ZnS纳米粒子的带隙。该理论也可用于确定各种粒径的有效质量。我们找到了方程,该方程显示了不同粒径的ZnS的变化有效质量。该方程与实验结果吻合。

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