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Quartz-Crystal Microbalance Gas Sensors Based on TiO2 Nanoparticles

机译:基于TiO2纳米粒子的石英晶微观气体传感器

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摘要

Quartz-crystal microbalance (QCM) sensors obtained by a facile deposition of TiO2 nanoparticles have been manufactured and tested. Their gas sensing performance is discussed from a theoretical point of view and then verified by means of "ad hoc" measurement systems, through experiments with two toxic gases, CO and NO2, and water vapor. The influence of UV irradiation on the sensor response has also been studied. Results show stable and repeatable responses, characterized by a very high sensitivity to water vapor, a good sensitivity to NO2, and only a fairly low response to CO. Both CO and NO2 responses depend strongly on the relative humidity (RH). So, NO2 sensing should be performed in a controlled humidity environment. Devices proved to be reliable detectors of low RH values. Advantages as low cost, facile preparation, RT operation, good stability, and high/moderate sensitivity, make these devices attractive as an alternative to mostly used gas sensors.
机译:通过制造和测试通过沉积TiO2纳米颗粒而获得的石英晶微观(QCM)传感器。 从理论的角度讨论了它们的气体传感性能,然后通过“临时”测量系统,通过两种有毒气体,CO和NO2和水蒸气的实验来验证。 还研究了UV辐射对传感器响应的影响。 结果表明稳定和可重复的反应,其特征在于对水蒸气的敏感性非常高,对NO2具有良好的敏感性,并且仅对CO的相当低的反应。CO和NO2响应依赖于相对湿度(RH)。 因此,在受控湿度环境中应执行NO2感测。 被证明的设备是低RH值的可靠探测器。 优点成本低,制备,RT操作,稳定性良好,高/中等灵敏度,使这些器件作为主要使用的气体传感器的替代品具有吸引力。

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