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Rapid Formation and Evolution of Anodized-Zn Nanostructures in NaHCO3 Solution

机译:NaHCO3溶液中阳极氧化锌纳米结构的快速形成和演化

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Densely packed nanowires were fabricated by anodizing zinc foil in slightly basic sodium bicarbonate solution. The formation of different nanostructures was observed as a result from varying the reaction parameters such as voltage, electrolyte concentration and time. An in-depth analysis of these formation stages enables a growth mechanism to be proposed. The evolution of anodized-Zn nanostructures could be categorized into four stages, i.e. pitting, growth of nanofibers in pit, formation of nanoflowers and transformation to nanowires. The fabricated nanowires being amorphous in nature, whilst the FTIR measurement revealed the chemical bonds within the nanowires attributed to zinc hydroxy carbonate/hydrozincite. Hydrozincite nanowires were converted into hexagonal wurtzite ZnO after heat-treatment at 250 degrees C for 1 h as verified by XRD measurement. The overall nanowires form was preserved after annealing but it displayed a granular surface. This surface texture will aid researchers to design/optimize the total expose surface area and yield device grade performances. (C) 2016 The Electrochemical Society. All rights reserved.
机译:通过在弱碱性碳酸氢钠溶液中对锌箔进行阳极氧化来制造密集堆积的纳米线。通过改变反应参数,例如电压,电解质浓度和时间,观察到形成了不同的纳米结构。对这些形成阶段的深入分析使得可以提出生长机理。阳极氧化锌纳米结构的演化可分为四个阶段,即点蚀,坑中纳米纤维的生长,纳米花的形成和向纳米线的转化。制成的纳米线本质上是非晶态的,而FTIR测量表明纳米线内的化学键归因于羟基碳酸锌/氢锌矿。通过X射线衍射(XRD)测量验证,水合锌矿纳米线在250摄氏度下热处理1小时后,转化为六方纤锌矿型ZnO。退火后保留了整个纳米线形式,但显示出颗粒状表面。这种表面纹理将有助于研究人员设计/优化总的暴露表面积并提高器件的性能。 (C)2016年电化学学会。版权所有。

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