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首页> 外文期刊>Physica, E. Low-dimensional systems & nanostructures >Electronic and optical properties of Mn impurities in ultra-thin ZnO nanowires: Insights from density-functional theory
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Electronic and optical properties of Mn impurities in ultra-thin ZnO nanowires: Insights from density-functional theory

机译:超薄ZnO纳米线中Mn杂质的电子和光学性质:密度函数理论的见解

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In this work we have employed density-functional theory with hybrid functionals to investigate the atomic and electronic structure of bare and hydrogenated Mn-doped ZnO nanowires with small diameter. We determine changes in magnetic and electronic structure of Mn-doped ZnO nanowires due to surface effects, such as hydrogen adsorption on the surface, presence of oxygen vacancies and dangling bonds. In the absence of passivation on the nanowire surface, the manganese atoms segregate to the surface, whereas under hydrogen adsorption the incorporation of Mn is energetically more favourable at inner sites. The presence of additional oxygen vacancies does not produce signficant changes in magnetic moments, although it produce significant changes in charge localization.
机译:在这项工作中,我们采用了密度功能理论,具有混合功能,以研究具有小直径的裸露和氢化的MN掺杂ZnO纳米线的原子和电子结构。 我们通过表面效应确定Mn掺杂ZnO纳米线的磁性和电子结构的变化,例如表面上的氢吸附,氧空位的存在和悬空键。 在没有钝化的纳米线表面的情况下,锰原子被隔离在表面上,而在氢吸附下,Mn的掺入在内部位点处具有能量更有利的。 额外的氧空位的存在不会产生磁矩的分子变化,尽管它产生了显着的充电定位变化。

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