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首页> 外文期刊>Journal of Materials Science >NASICON devices attached with Li2CO3-BaCO3 auxiliary phase for CO2 sensing under ambient conditions
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NASICON devices attached with Li2CO3-BaCO3 auxiliary phase for CO2 sensing under ambient conditions

机译:NASICON设备连接有Li2 CO3 -BaCO3 辅助相,用于在环境条件下进行CO2 感测

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摘要

NASICON (Na3Zr2Si2PO12)—based electrochemical devices, constructed in a gas-separation type or planar type, were attached with a Li2CO3-BaCO3 (1:2 in molar ratio) auxiliary phase to investigate their CO2 sensing properties under ambient conditions. The devices were found to be far more resistant to the disturbance by a change in relative humidity (RH) than those using Na2CO3 or NaHCO3 auxiliary phase. The EMF was correlated linearly with the logarithm of CO2 concentration in the range of 0.03–50% CO2 at 30°C, and the linear correlation shifted up or down only slightly with a change in RH between 30 and 90%. For a change in operating temperature, the CO2 sensing capability was kept almost the same at 45°C, while it was deteriorated significantly at 60 and 75°C, especially in the lower RH range. Applicability of a cobalt oxide bronze (Na0.6CoO2) as a solid reference electrode for the planar type device was also investigated. The devices using the bronze reference electrode exhibited the CO2 sensing capability as good as those using the Au reference electrode did. In addition, the bronze electrode was found to much improve the reproducibility of the EMF to a fixed concentration of CO2 among devices.
机译:基于NASICON(Na3 Zr2 Si2 PO12 )的电化学装置(以气体分离型或平面型构造)与Li2 CO3 < / sub> -BaCO3 (摩尔比为1:2)辅助相,研究其在环境条件下对CO2 的传感特性。研究发现,与使用Na2 CO3 或NaHCO3 辅助相的设备相比,这些设备对相对湿度(RH)的变化具有更强的抵抗干扰能力。在30°C下,EMF与0.02–50%CO2 范围内的CO2 浓度的对数呈线性相关,并且线性相关仅随RH在30°C之间的变化而略有上移或下移。和90%。对于工作温度的变化,在45°C时,CO2的传感能力几乎保持不变,而在60°C和75°C时,尤其是在较低的RH范围内,其显着降低。还研究了氧化钴青铜(Na0.6 CoO2 )作为平面型器件的固体参比电极的适用性。使用青铜参比电极的设备表现出与使用Au参比电极相同的CO2 感应能力。此外,发现青铜电极可大大提高设备中EMF对固定浓度的CO2的重现性。

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  • 来源
    《Journal of Materials Science 》 |2003年第21期| 4283-4288| 共6页
  • 作者单位

    Department of Molecular and Material Sciences Interdisciplinary Graduate School of Engineering Sciences Kyushu University;

    Department of Materials Science Faculty of Engineering Sciences Kyushu University;

    Advanced Science and Technology Center for Cooperative Research Kyushu University;

    Department of Materials Science Faculty of Engineering Sciences Kyushu University;

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