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Effects of Crystal Structure and Particle Size on Ethanol Gas Sensing Characteristics of Nanocrystalline ITO Thick Film

机译:晶体结构与粒径对纳米晶ITO厚膜乙醇气体感应特性的影响

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摘要

Indium tin oxide(ITO)films are widely used in optical devices for their high electrical conductivity and high transparency to visible light.Some relevant papers reported ITO thin films showed favorable sensitivity to NO2 and NO gases.However,researches on gas sensing with ITO films,especially thick films,had not been actively conducted until now.The crystal structure and particle size of ITO can be controlled in nanometer accuracy by coprecipitation method.To investigate the effects of crystal structure and particle size of nano-sized ITO powder on gas sensing properties,two kinds of ITO sensors,having cubic and rhombohedral crystal structures with 15 nm particle sizes,were investigated,and three kinds of ITO sensors having 15,30,and 70 nm particle sizes,with the rhombohedral crystal structure,were investigated.Gas sensing properties were examined in a chamber with dry air(less than 1 ppm humidity concentration)or gaseous ethanol diluted in dry air.ITO gas sensors with the finer the particle sieze have better sensitivity than of large particle size.The sensitivity of ITO thick films were evaluated by sensing of gaseous ethanol.
机译:氧化铟锡(ITO)薄膜广泛用于光学装置,用于其高导电性和高透明度至可见光。有些相关论文报告的ITO薄膜对NO2和NO气体显示出有利敏感性。然而,使用ITO薄膜的气体感应研究迄今为止,尤其是厚膜,尤其是厚的薄膜。通过共沉淀方法可以以纳米精度控制ITO的晶体结构和粒度。探讨纳米尺寸ITO粉末在气体传感上的晶体结构和粒度粒度的影响研究了具有15nm粒度的三次和菱形晶体结构的两种ITO传感器,研究了具有15,30和70nm粒度的三种ITO传感器,具有菱面膜晶体结构.Gas在具有干燥空气(小于1ppm湿度浓度)或在干燥空气中稀释的气态乙醇的腔室中检查感测性质。含有更好的PA的气体传感器RTICLE SIEZE具有比大粒径更好的敏感性。通过感测气态乙醇来评价ITO厚膜的敏感性。

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  • 作者单位

    Department of Materials Science and Metallurgy Kyungpook National University Daegu 702-701 Korea;

    Department of Materials Science and Metallurgy Kyungpook National University Daegu 702-701 Korea;

    Department of Materials Science and Metallurgy Kyungpook National University Daegu 702-701 Korea;

    Department of Materials Science and Metallurgy Kyungpook National University Daegu 702-701 Korea;

    Department of Bio-medical Engineering Kyungpook National University Daegu 702-701 Korea;

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  • 原文格式 PDF
  • 正文语种 jpn
  • 中图分类 陶瓷工业;
  • 关键词

    ITO; Sensor; Coprecipitation method;

    机译:ITO;传感器;CopRecipition方法;

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