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Novel sensing approach for LPG leakage detection: Part I: Operating Mechanism and Preliminary Results

机译:用于液化石油气泄漏检测的新型传感方法:第一部分:运行机制和初步结果

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摘要

Gas sensing technology has been among the topical research work for quite some time. This paper showcases the research done on the detection mechanism of leakage of domestic cooking gas at ambient conditions. MEMS-based interdigital sensors were fabricated on oxidized single crystal silicon surfaces by maskless photolithography technique. The electrochemical impedance analysis of these sensors was done to detect liquefied petroleum gas (LPG) with and without coated particles of tin oxide (SnO2) in form of thin layer.A thin-film of SnO2 was spin-coated on the sensing surface of the interdigital sensor to induce selectivity to LPG that consists of a 60/40 mixture of propane and butane respectively. The paper reports a novel strategy for gas detection under ambient temperature and humidity conditions. The response time of the coated sensor was encouraging and own a promising potential to the development of a complete efficient gas sensing system.
机译:一段时间以来,气体传感技术一直是主题研究工作之一。本文展示了在环境条件下对家用烹饪气体泄漏检测机理所做的研究。通过无掩模光刻技术在氧化的单晶硅表面上制造了基于MEMS的叉指式传感器。对这些传感器进行电化学阻抗分析,以检测是否有薄层形式的氧化锡(SnO2)涂层颗粒的液化石油气(LPG).SnO2薄膜旋涂在传感器的传感表面上叉指传感器,以诱导对LPG的选择性,该传感器分别由丙烷和丁烷的60/40混合物组成。该论文报道了一种在环境温度和湿度条件下进行气体检测的新策略。涂层传感器的响应时间令人鼓舞,并且对于开发完整的高效气体传感系统具有广阔的前景。

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