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Development of Ammonia Gas Sensors Based on Trivalent Al3+ Cation Conducting Solid Electrolyte

机译:基于三价Al3 +阳离子进行固体电解质的氨气传感器的开发

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摘要

Solid electrolyte type ammonia (NH3) gas sensors were fabricated using Al3+ ion conducting (Al0.2Zr0.8)(20/19)Nb-(PO4)(3) solid electrolyte with an aluminum thin film as a reference electrode. A rare-earth ammonium sulfate double salt of R-2(SO4)(3)center dot(NH4)(2)SO4 (R = rare earth) or a lanthanum oxysulfate La2O2SO4-based solid solution was selected as the auxiliary sensing electrode on the basis of thermal stability or water durability. Both sensors with R-2(SO4)(3)center dot (NH4)(2)SO4 or La2O2SO4-NH4H2PO4 auxiliary sensing electrodes exhibited a quantitative and theoretical NH3 sensing performance at 230-300 or 170-190 degrees C, respectively; therefore, sensors based on the (Al0.2Zr0.8)(20/19)Nb(PO4)(3) solid electrolyte are expected to be promising candidates as NH3 detectors that can operate in a wide temperature range of 170-300 degrees C by changing the auxiliary sensing electrode component.
机译:使用Al3 +离子传导(Al0.2ZR0.8)(20/19)Nb-(PO4)(3)固体电解质,用铝薄膜作为参比电极,使用Al3 +离子传导(Al0.2Zr0.8)(20/19)Nb-(3)固体电解质制造固体电解质型氨(NH3)气体传感器。 选择稀土硫酸铵双盐的R-2(SO 4)(3)中心点(NH4)(2)SO4(R =稀土)或镧硫酸镧La2O 2 SO 4的固溶体作为辅助感测电极 热稳定性或水耐用性的基础。 具有R-2(SO4)(3)中心点(NH4)(2)SO4或LA2O2SO4-NH4H2PO4辅助感测电极的两个传感器也分别在230-300或170-190摄氏度下表现出定量和理论NH3感测性能; 因此,基于(AL0.2ZR0.8)(20/19)Nb(PO4)(3)固体电解质的传感器预计将是有前途的候选者作为NH3检测器,可在170-300摄氏度的宽温度范围内运行 通过改变辅助感测电极部件。

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