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首页> 外文期刊>Journal of Alloys and Compounds: An Interdisciplinary Journal of Materials Science and Solid-state Chemistry and Physics >Facile synthesis and an effective doping method for ZnO:In3+ nanorods with improved optical properties
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Facile synthesis and an effective doping method for ZnO:In3+ nanorods with improved optical properties

机译:光学特性得到改善的ZnO:In3 +纳米棒的简便合成和有效掺杂方法

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摘要

The solegel spin-coating method is usually used for thin-film deposition rather than to grow one-dimensional nanostructures. In this study, a novel regrowth method for spin-coated ZnO:In3+ films is demonstrated, using vapor-confined face-to-face annealing (VC-FTFA) in which a mica sheet is inserted between the two films prior to FTFA. ZnO:In3+ nanorods are regrown when indium chloride is used as the solvent because ZnCl2 and InCl3 vapors are generated and confined between the films. The near-band-edge emission intensity of the ZnO: In3+ nanorods resulting from VC-FTFA at 700 degrees C is enhanced by a factor of 17 compared with that of ZnO: In3+ films annealed in open air at the same temperature. Our method offers a simple and low-cost route for the fabrication of ZnO nanorods. (C) 2015 Elsevier B.V. All rights reserved.
机译:solegel旋涂法通常用于薄膜沉积,而不是用于生长一维纳米结构。在这项研究中,展示了一种新的用于旋涂ZnO:In3 +薄膜的再生方法,该方法使用气相密合的面对面退火(VC-FTFA),其中在FTFA之前将云母片插入两层薄膜之间。当使用氯化铟作为溶剂时,ZnO:In3 +纳米棒会再生长,因为会在膜之间产生并限制ZnCl2和InCl3蒸气。与在相同温度下在露天退火的ZnO:In3 +薄膜相比,在VC-FTFA在700摄氏度下产生的ZnO:In3 +纳米棒的近带边缘发射强度提高了17倍。我们的方法为制造ZnO纳米棒提供了一种简单且低成本的途径。 (C)2015 Elsevier B.V.保留所有权利。

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