This paper and its companion (Part I) are devoted to the development and to the experimental verification of three simple gray-box models able to predict the behavior of some commercial thick film SnO2-based sensors in presence of oxygen and a reducing gas (CO). In this paper the models developed in Part I are applied to different commercial tin oxide sensors, and experimental results are discussed in order to gain a deeper insight into the sensor behavior.
Fort, A., Mugnaini, M., Rocchi, S., SERRANO SANTOS, M.B., Spinicci, R., Vignoli, V. (2006). Surface State Model for Conductance Responses During Thermal-Modulation of SnO2-Based Thick Film Sensors: Part II—Experimental Verification. IEEE TRANSACTIONS ON INSTRUMENTATION AND MEASUREMENT, 55(6), 2107-2117 [10.1109/TIM.2006.887119].
Surface State Model for Conductance Responses During Thermal-Modulation of SnO2-Based Thick Film Sensors: Part II—Experimental Verification
FORT, ADA;MUGNAINI, MARCO;ROCCHI, SANTINA;VIGNOLI, VALERIO
2006-01-01
Abstract
This paper and its companion (Part I) are devoted to the development and to the experimental verification of three simple gray-box models able to predict the behavior of some commercial thick film SnO2-based sensors in presence of oxygen and a reducing gas (CO). In this paper the models developed in Part I are applied to different commercial tin oxide sensors, and experimental results are discussed in order to gain a deeper insight into the sensor behavior.File | Dimensione | Formato | |
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https://hdl.handle.net/11365/20962
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