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Selectivity Enhancement of YSZ-based VOC Sensor Utilizing SnO_2/NiO-SE via the Application of a Physical Gas-diffusion Barrier

机译:通过应用物理气体扩散屏障利用SnO_2 / NiO-SE的YSZ基VOC传感器的选择性增强

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The sensing characteristics of an yttria-stabilized zirconia (YSZ)-based gas sensor utilizing an SnO_2/NiO(+Al_2O_3) sensing-electrode (SE) were evaluated, with aspirations of selective ppb level detection of indoor volatile organic compounds (VOCs). The fabricated sensor gave a preferential response towards 50 ppb C_7H_8 (toluene), while exhibiting negligible responses towards interfering gases (C_3H_6, H_2, CO, NO_2, C_2H_5OH (ethanol)) at their average atmospheric concentrations. However, it was observed that toluene detection was strongly affected by high concentration ethanol, which can peak to approximately 10 times higher in concentration in indoor environments, owing to the ubiquitous use of alcohol in beverages, cooking and cleaning products. To overcome this limitation, a physical gas-diffusion barrier which was comprised of nano-Al_2O_3 particles was formed on the exposed edges of the NiO-SE, which assisted in the effective oxidation of ethanol in the SnO_2 catalytic layer, by avoiding direct penetration of ethanol into NiO-SE. The developed YSZ-based sensor utilizing an SnO_2/Al_2O_3/NiO(+Al_2O_3)-SE was found to be capable of selectively detecting aromatic VOCs lower than the indoor guideline concentrations, with low interference from high ethanol concentrations.
机译:评价利用SnO_2 / NiO(+ Al_2O_3)感测电极(eSZ)的氧化钇稳定的氧化锆(YSZ)的气体传感器的感测特性,具有选择性PPB水平检测的室内挥发性有机化合物(VOC)的吸附。制造的传感器对50ppb C_7H_8(甲苯)产生了优先响应,同时在其平均大气浓度下表现出对干扰气体(C_3H_6,H_2,CO,NO_2,C_2H_5OH(乙醇))的可忽略的反应。然而,观察到甲苯检测受高浓度乙醇的强烈影响,由于饮料中的饮料,烹饪和清洁产品中的酒精无处不在地使用醇,可达到室内环境中浓度高约10倍。为了克服这种限制,在NiO-SE的暴露边缘上形成由纳米Al_2O_3颗粒组成的物理气体扩散屏障,其通过避免直接渗透,在NiO-SE的暴露边缘上形成有效氧化乙醇中的乙醇乙醇进入nio-se。发现利用SnO_2 / Al_2O_3 / NIO(+ Al_2O_3)-SE的发育的YSZ的传感器能​​够选择性地检测低于室内准则浓度的芳香VOC,具有低乙醇浓度的低干扰。

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