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首页> 外文期刊>日本セラミックス協会学術論文誌 >Synthesis of highly conductive and transparent ZnO nanowhisker films using aqueous solution
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Synthesis of highly conductive and transparent ZnO nanowhisker films using aqueous solution

机译:水溶液合成高导电透明ZnO纳米晶须膜

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摘要

Highly conductive and transparent ZnO nanowhisker films which can be used as transparent electrodes of optoelectronic devices have been produced at lower temperatures on modified conductive F-doped SnO2 coated glass substrates in zinc nitrate-hexamethylenetetramine aqueous solutions with the addition of polyethylenimine. The crystal structure and morphology of ZnO nanowhiskers were characterized by X-ray diffraction and FE-SEM, respectively. The morphology of ZnO whiskers is dependent on the existence of surfactant polyethylenimine. The optical and electrical properties of the resultant porous films are discussed in terms of the crystal characteristics and microstructure. The films consisting of nanowhiskers with a height of 1 mum exhibited high transmittance of up to 85% in the visible range. The high monochromatic incident photo-electric conversion efficiency (IPCE) of about 50% indicated the excellent potential of ZnO electrodes based on nanowhisker arrays.
机译:在较低的温度下,在硝酸锌-六亚甲基四胺水溶液中,加入聚乙烯亚胺,在改性的导电性F掺杂SnO2涂层玻璃基板上,制备了可用作光电器件透明电极的高导电性和透明性的ZnO纳米晶须膜。分别通过X射线衍射和FE-SEM表征了ZnO纳米晶须的晶体结构和形貌。 ZnO晶须的形态取决于表面活性剂聚乙烯亚胺的存在。根据晶体特性和微结构讨论了所得多孔膜的光学和电学性质。由高度为1微米的纳米晶须组成的薄膜在可见光范围内显示高达85%的高透射率。约50%的高单色入射光电转换效率(IPCE)表明,基于纳米晶须阵列的ZnO电极具有出色的电势。

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