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气体-溶液-固体法制备铜基Cu(OH)2纳米带阵列
引用本文:邱永福,兰善红,范洪波,杨晓西. 气体-溶液-固体法制备铜基Cu(OH)2纳米带阵列[J]. 广东化工, 2011, 38(4): 70-71
作者姓名:邱永福  兰善红  范洪波  杨晓西
作者单位:东莞理工学院,化学与环境工程学院,广东省分布式能源重点实验室,广东,东莞,523808
基金项目:广东省自然科学基金,国家自然科学基金,973项目
摘    要:
文章报道一种新的Cu(OH)2纳米带阵列合成方法,即气体-溶液-固体法。这种方法主要特点是把铜片置于氨水的液面上,使铜片基板表面有氧气、氨水和铜参与反应,最终在铜片基板上生长出Cu(OH)2纳米带阵列。Cu(OH)2纳米带的尺寸可以通过控制氨水的浓度进行调节,即氨水浓度降低,Cu(OH)2纳米带的尺寸也变小了;而且Cu(OH)2在一定温度下可以脱水转变成为CuO纳米带;最后研究了Cu(OH)2和CuO纳米带阵列的生长机理。

关 键 词:纳米材料  半导体  纳米结构  Cu(OH)2

Preparation of Cu(OH)2 Nanoribbon Arrays on Cu Substrates by Gas-Solution-Solid Method
Qiu Yongfu,Lan Shanhong,Fan Hongbo,Yang Xiaoxi. Preparation of Cu(OH)2 Nanoribbon Arrays on Cu Substrates by Gas-Solution-Solid Method[J]. Guangdong Chemical Industry, 2011, 38(4): 70-71
Authors:Qiu Yongfu  Lan Shanhong  Fan Hongbo  Yang Xiaoxi
Affiliation:(Guangdong Provincial Key Laboratory of Distributed Energy Systems and College of Chemistry and Environmental Engineering,Dongguan University of Technology,Dongguan 523808,China)
Abstract:
A simple gas-solution-solid method had been successfully developed to prepare Cu(OH)2 nanoribbon arrays on Cu substrates.The method consists of putting Cu foils above the ammonia solution for about 24 hours to obtain Cu(OH)2 nanoribbon arrays.The sizes of Cu(OH)2 nanoribbons were determined by the concentrations of ammonia solutions.Lowing the concentrations of ammonia solutions resulted in small sizes of Cu(OH)2 nanoribbons.Finally,Cu(OH)2 nanoribbons were transformed into CuO nanoribbons by heating at 100 ℃ for 4 hours and the growth mechanism of the nanoribbons was also studied.
Keywords:Cu(OH)2
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