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Band Gap Narrowing and Widening of ZnO Nanostructures and Doped Materials

机译:ZnO纳米结构和掺杂材料的带隙变窄和展宽

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摘要

Band gap change in doped ZnO is an observed phenomenon that is very interesting from the fundamental point of view. This work is focused on the preparation of pure and single phase nanostructured ZnO and Cu as well as Mn-doped ZnO for the purpose of understanding the mechanisms of band gap narrowing in the materials. ZnO, Zn0.99Cu0.01O and Zn0.99Mn0.01O materials were prepared using a wet chemistry method, and X-ray diffraction (XRD) results showed that all samples were pure and single phase. UV-visible spectroscopy showed that materials in the nanostructured state exhibit band gap widening with respect to their micron state while for the doped compounds exhibited band gap narrowing both in the nano and micron states with respect to the pure ZnO materials. The degree of band gap change was dependent on the doped elements and crystallite size. X-ray photoelectron spectroscopy (XPS) revealed that there were shifts in the valence bands. From both UV-visible and XPS spectroscopy, it was found that the mechanism for band gap narrowing was due to the shifting of the valance band maximum and conduction band minimum of the materials. The mechanisms were different for different samples depending on the type of dopant and dimensional length scales of the crystallites.
机译:从基本的观点来看,掺杂的ZnO中的带隙变化是一种非常有趣的现象。这项工作的重点是制备纯单相纳米结构的ZnO和Cu以及Mn掺杂的ZnO,以了解材料中带隙变窄的机理。采用湿化学法制备了ZnO,Zn0.99Cu0.01O和Zn0.99Mn0.01O材料,X射线衍射(XRD)结果表明所有样品均为纯相。紫外可见光谱表明,相对于纯ZnO材料,处于纳米结构状态的材料相对于其微米状态表现出带隙变宽,而对于掺杂的化合物而言,相对于纯ZnO材料而言,其在纳米和微米状态下均表现出带隙变窄。带隙变化的程度取决于掺杂元素和微晶尺寸。 X射线光电子能谱(XPS)显示价带发生了变化。从紫外可见光谱和XPS光谱学都发现,带隙变窄的机理是由于材料的价带最大值和导带最小值的移动引起的。对于不同的样品,其机理是不同的,具体取决于掺杂剂的类型和微晶的尺寸长度尺度。

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