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Morphology-control of crystallites precipitated from ZnO gel films by applying electric field during hot-water treatment

机译:在热水处理过程中通过施加电场控制从ZnO凝胶薄膜中析出的微晶的形貌

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摘要

The effect of an external direct current (DC) electric field induction during hot-water treatment (HWT) on sol-gel derived ZnO coatings for controlled formation of good crystalline ZnO films was investigated. The electric field induced hot-water treatment (EF-HWT) was found to influence the formation of crystalline ZnO nanostructures on the ZnO gel films at low-temperature of 50 0C for 3 h. The effects of time, voltage and substrates used during the EF-HWT were investigated. Flower-like precipitates of hexagonal zinc oxide were generated from the zinc acetate derived ZnO gel film on a silicon single crystal substrate at the negative electrode by applying an electric field. Significant c-axis orientation of hexagonal ZnO on the silicon substrate was confirmed from XRD patterns. These results demonstrated that the EF-HWT of sol-gel derived ZnO films is a promising, low-temperature technique to control the morphology and crystal-linity of oxide coatings.
机译:研究了在热水处理(HWT)过程中外部直流(DC)电场感应对溶胶-凝胶衍生的ZnO涂层的影响,以控制形成良好的结晶ZnO膜。发现电场诱导的热水处理(EF-HWT)在ZnO凝胶膜上在低温50 0C下持续3 h会影响晶体ZnO纳米结构的形成。研究了在EF-HWT中使用时间,电压和基材的影响。通过施加电场,在负极的硅单晶基板上,从乙酸锌衍生的ZnO凝胶膜生成六方状的氧化锌的花状沉淀物。由XRD图证实了六方ZnO在硅衬底上的显着c轴取向。这些结果表明,溶胶-凝胶衍生的ZnO薄膜的EF-HWT是一种有前景的低温技术,可控制氧化物涂层的形貌和结晶度。

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