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首页> 外文期刊>Journal of nanomaterials >Synthesis of Nanosized Zinc-Doped Cobalt Oxyhydroxide Parties by a Dropping Method and Their Carbon Monoxide Gas Sensing Properties
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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:滴加法合成纳米掺杂羟基氧化钴及其一氧化碳气敏特性

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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)2solution 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微量滴定和在空气中氧化,由Co(NO3)2溶液制备了羟基氧化钴(CoOOH)和掺杂锌(Zn-)的CoOOH(1-4%Zn)的两个纳米结构。 X射线衍射(XRD)分析结果表明,在碱度(OH- / Co +)为5的条件下,经过6 h的40°C热处理,可以得到纯净的CoOH态。 Zn离子优先取代CoOOH结构中的Co离子,导致其结晶度降低。圆盘状的CoOOH纳米结构在40–110°C的温度范围内对一氧化碳(CO)表现出良好的敏感性,在70–80°C的温度下对CO的敏感性最高。当CoOOH纳米结构掺有1%Zn时,在70–80°C时,其对CO气体的敏感性和选择性得以改善;进一步将锌掺杂至2%会降低纳米CoOOH的CO感测性能。传感器对火灾早期共存的各种气体的交叉敏感性研究结果表明,掺杂Zn的纳米CoOOH对CO的敏感性最高。掺杂Zn的纳米CoOOH膜对火的敏感性很高。室温下的一氧化碳,使其成为早期火灾探测的有希望的传感器。

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