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Synthesis of Nanosized Zinc-Doped Cobalt Oxyhydroxide Parties by a Dropping Method and Their Carbon Monoxide Gas Sensing Properties

机译:滴定方法及其一氧化碳气体传感特性合成纳米型锌掺杂钴羟基氧化物派对

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摘要

Two nanostructures of cobalt oxyhydroxide (CoOOH) and Zinc-(Zn-) doped CoOOH (1–4% Zn) are prepared from Co(NO3)2 solution via microtitration with NaOH and oxidation in air. The X-ray diffraction (XRD) analysis results show that a pure state of nano-CoOOH can be obtained at an alkalinity (OH−/Co+) of 5 with 40°C heat treatment after 6 h. The Zn ions preferentially substitute Co ions in the CoOOH structure, resulting in a decrease of its crystallinity. The disc-like CoOOH nanostructure exhibits good sensitivity to carbon monoxide (CO) in a temperature range of 40–110°C with maximum sensitivity to CO at around 70–80°C. When CoOOH nanostructure is doped with 1% Zn, its sensitivity and selectivity for CO gas are improved at 70–80°C; further Zn doping to 2% degraded the CO sensing properties of nano-CoOOH. The results of a cross-sensitivity investigation of the sensor to various gases coexisting at early stages of a fire show that the sensitivity of Zn-doped nano-CoOOH is the highest toward CO. Zn-doped nano-CoOOH film exhibits a high sensitivity to CO at room temperature, making it a promising sensor for early-stage fire detection.
机译:通过用NaOH和空气中的NaOH和氧化在Co(NO 3)2溶液中由CO(NO 3)2溶液制备两种氧化钴(COOOH)和锌 - (Zn-)掺杂的CoOH(1-4%Zn)。 X射线衍射(XRD)分析结果表明,在6小时后,可以在50℃热处理的碱度(OH-/ CO +)中获得纯净的纳米COOH。 Zn离子优先替代CoOH结构中的Co离子,从而降低其结晶度。盘状CoOOH纳米结构对40-110℃的温度范围内的一氧化碳(CO)具有良好的敏感性,最大敏感性与CO约为70-80℃。当CoOOH纳米结构掺杂有1%Zn时,其对CO气体的灵敏度和选择性在70-80°C下得到改善;此外,Zn掺杂至2%降解了纳米CoOOH的CO感测性。传感器对在火灾早期阶段共存的传感器对各种气体的交叉敏感性调查结果表明,Zn掺杂纳米CoOOH的敏感性最高朝向CO。Zn掺杂的纳米CoOH膜对敏感性高CO在室温下,使其成为早期火灾探测的有希望的传感器。

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    Jian-Wen Wang; Yi-Ming Kuo;

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  • 年度 2013
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  • 原文格式 PDF
  • 正文语种 eng
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