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Electronic band structure and electron transfer properties of two-dimensional metal oxide nanosheets and nanosheet films

机译:二维金属氧化物纳米片和纳米片薄膜的电子带结构和电子转移性能

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The electronic properties of 2-dimensional metal oxide nanosheets are reviewed. Although the band structures of 2D nanosheets bear some resemblance with the band structures of the 3D parent compounds from they are derived, their 2D nature may have a profound influence on the location of the valence and conduction bands. The presence of structural defects, aliovalent dopants, and adsorbed molecules affects the mobility and concentration of charge carriers, and may even influence the band structure. The ability to transfer electrons to and from nanosheets is controlled by the charge density of the nanosheet, and/or the presence of electron donating or accepting species in the immediate vicinity. Charge transport and electron transfer in multilayer films and heterostructures are also discussed. (C) 2017 Elsevier Ltd. All rights reserved.
机译:综述了二维金属氧化物纳米片的电子性质。 尽管2D纳米片的带结构与来自它们的3D母体化合物的带结构具有一些相似之处,但是它们的2D性质可以对价和传导带的位置具有深远的影响。 结构缺陷的存在,亚价掺杂剂和吸附分子影响电荷载体的迁移率和浓度,并且甚至可以影响带结构。 将电子传递到纳米片的能力由纳米片的电荷密度控制,和/或在附近的电子捐赠或接受物种的存在。 还讨论了多层薄膜和异质结构中的电荷运输和电子转移。 (c)2017 Elsevier Ltd.保留所有权利。

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