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Band Gap Narrowing of 2-D Ultra-Thin MgO Graphene-Like Sheets

机译:二维超薄MgO石墨烯样片的带隙窄化

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Ultra-thin MgO nanosheets obtained by a sol-gel method were found to have cubic crystal structure with a space group of Fm-3m. The thickness of the sheets for the 600 degrees C and 5 h annealing condition sample is 2 nm. Although the MgO sheets are two-dimensional and ultra-thin, unlike graphene, they are polycrystalline. Their bandgap energies are dependent on the thermal annealing conditions (which affect the thickness of the MgO nanosheets). It is found that there was bandgap narrowing of the MgO nanosheets with respect to the bulk values. UV-visible spectroscopy and X-Ray Photoelectron spectroscopy (XPS) enables us to identify the shifts of the valence and conduction bands causing the bandgap narrowing. (C) The Author(s) 2016. Published by ECS. All rights reserved.
机译:发现通过溶胶-凝胶法获得的超薄MgO纳米片具有立方晶体结构,其空间群为Fm-3m。 600摄氏度和5小时退火条件样品的片材厚度为2 nm。尽管MgO片是二维且超薄的,但与石墨烯不同,它们是多晶的。它们的带隙能量取决于热退火条件(这会影响MgO纳米片的厚度)。发现相对于体积值,MgO纳米片存在带隙变窄。紫外可见光谱和X射线光电子能谱(XPS)使我们能够识别价带和导带的移动,从而引起带隙变窄。 (C)作者2016。由ECS出版。版权所有。

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