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Development of room temperature vapor sensor system based on tungsten organometallic-PANi thin film

机译:基于钨有机金属-PANi薄膜的室温蒸汽传感器系统的开发

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The aim of this research is to develop vapor sensor system which works at room temperature. The development of system was used to test vapor sensing properties of tungsten organometallic-PANi thin film towards isopropanol and ethanol vapors. Tungsten organometallic solution was prepared by sol gel method. Commercial PANi powder were directly added into tungsten organometallic solution to form composite solution. Five layers of the solution were deposited onto SiO2 coated silicon substrate using spin coating technique for fabrications of vapor sensing device. The vapor sensing test revealed that the composite film was responsive towards isopropanol and ethanol vapors with sensitivity of 5.58% and 4.76% each. The reversibility of sensor towards isopropanol vapor is 1.37 and towards ethanol vapor is 1.16. Meanwhile the response time for the sensor towards isopropanol vapor is 81 s and towards ethanol vapor is 108 s. The recovery time towards both vapors are same i.e. 189 s.
机译:这项研究的目的是开发在室温下工作的蒸气传感器系统。该系统的开发被用于测试钨有机金属-PANi薄膜对异丙醇和乙醇蒸气的蒸气感测特性。通过溶胶凝胶法制备了钨有机金属溶液。将市售的PANi粉末直接添加到钨有机金属溶液中以形成复合溶液。使用旋涂技术将五层溶液沉积在涂有SiO2的硅基板上,以制造蒸汽传感装置。蒸气感测测试表明,该复合膜对异丙醇和乙醇蒸气有响应,灵敏度分别为5.58%和4.76%。传感器对异丙醇蒸气的可逆性为1.37,对乙醇蒸气的可逆性为1.16。同时,传感器对异丙醇蒸气的响应时间为81 s,对乙醇蒸气的响应时间为108 s。两种蒸气的恢复时间相同,即189 s。

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