Ammonia Gas Sensor Using Thick Film of Au-Loaded Tungsten Trioxide
Masami Ando, Takashi Tsuchida, Seiichi Suto, Takahiro Suzuki, Chiaki Nakayama, Norio Miura, Noboru Yamazoe
Abstract
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Masami Ando, Takashi Tsuchida, Seiichi Suto, Takahiro Suzuki, Chiaki Nakayama, Norio Miura, Noboru Yamazoe
Abstract
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Thick films of Au-loaded WO3 mixed with glass frit were prepared on an alumina substrate by the printing method, and influences of film thickness, Au-loading and operating temperature on the NH3 sensing characteristics were investigated. With an increase in film thickness and Au-loading, the maximum sensitivity (Km) increased, while the temperature for maximum sensitivity (Tm) decreased. An optimum film was revealed to be the 4.0mass% Au-loaded one of a 250μm-thickness for the optimum operating temperature of 450°C. The sensor proved excellent NH3 sensing characteristics in gas sensitivity, response transient, resistance to humidity and long-term stability when subjected to heat cleaning once a day during its operation.
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Thick films of Au-loaded WO3 mixed with glass frit were prepared on an alumina substrate by the printing method, and influences of film thickness, Au-loading and operating temperature on the NH3 sensing characteristics were investigated. With an increase in film thickness and Au-loading, the maximum sensitivity (Km) increased, while the temperature for maximum sensitivity (Tm) decreased. An optimum film was revealed to be the 4.0mass% Au-loaded one of a 250μm-thickness for the optimum operating temperature of 450°C. The sensor proved excellent NH3 sensing characteristics in gas sensitivity, response transient, resistance to humidity and long-term stability when subjected to heat cleaning once a day during its operation.
Key concepts: Tungsten trioxide, Materials science, Frit, Substrate (aquarium), Sensitivity (control systems), Operating temperature, Composite material, Humidity