${rm ZrO}_{2}$ (YSZ) films are prepared by electron beam deposition and subsequently characterized '/> Selective Capacitive Sensor for Ammonia Hydroxide at Room Temperature
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Selective Capacitive Sensor for Ammonia Hydroxide at Room Temperature

机译:室温下氢氧化铵的选择性电容传感器

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Nanostructured yttria stabilized ${rm ZrO}_{2}$ (YSZ) films are prepared by electron beam deposition and subsequently characterized by using X-ray diffraction, field emission scanning electron microscopy, and UV-Vis spectroscopy. A capacitive device with Al/YSZ/Al structure acts as a sensor for analytes like ammonia solution, acetone, and alcohols. Low powered read-out system based on an astable mode frequency generator is employed for monitoring the response continuously. The YSZ capacitive sensor operates at room temperature with a decrease in frequency on exposure to ammonia solution and the response varies linearly with concentrations (1%–30%). In contrast, highly volatile analytes like acetone, ethanol, and dichloromethane exhibit an increase in frequency after the exposures. Water exposure produces no significant change in the sensor response. The unique selectivity of YSZ towards ammonia solution is attributed to the modified dielectric constant of the YSZ films due to preferential binding of water molecules to the analyte.
机译:通过电子束沉积制备纳米结构的氧化钇稳定的<配方式> =“ inline”> $ {rm ZrO} _ {2} $ (YSZ)膜,然后对其进行表征通过使用X射线衍射,场发射扫描电子显微镜和UV-Vis光谱。具有Al / YSZ / Al结构的电容性设备可充当氨溶液,丙酮和酒精等分析物的传感器。采用基于不稳定模式频率发生器的低功率读出系统来连续监视响应。 YSZ电容式传感器在室温下工作,暴露于氨溶液中时频率会降低,并且响应随浓度(1%–30%)线性变化。相反,暴露后,高挥发性分析物(如丙酮,乙醇和二氯甲烷)的频率增加。暴露于水不会对传感器的响应产生重大影响。 YSZ对氨溶液的独特选择性归因于由于水分子与分析物的优先结合而引起的YSZ膜介电常数的改变。

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