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Array of Gas Sensors Based on TiO2 Upon Temperature Modulation

机译:调制后基于TiO2的气体传感器阵列

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The aim of this work is to demonstrate that thermal modulation improves the selectivity of TiO2 – based resistive-type gas sensors. The sensors operate upon sinusoidal temperature profile over a temperature range of 240–300°C. Sensor array is composed of nanocrystalline TiO2:Cr (0.1–10 at.% Cr). The switching from n-type to p-type conductivity occurs at about 1 at. % Cr. Electrical resistance responses to reducing and oxidizing gases such as: NO, NO2, H2, CH4, C3H8 (0–3000 ppm) are dynamically recorded and compared in order to assess cross-sensitivity as well as humidity interference. The results of the Principle Component Analysis, PCA demonstrate that reliable detection and classification of H2, and NOx have been achieved.
机译:这项工作的目的是证明热调制可以提高基于TiO2的电阻型气体传感器的选择性。传感器在240–300°C的温度范围内以正弦温度曲线运行。传感器阵列由纳米晶TiO2:Cr(0.1–10 at。%Cr)组成。从n型电导率转换为p型电导率发生在大约1 at。铬含量动态记录并比较还原性和氧化性气体(例如:NO,NO2,H2,CH4,C3H8(0–3000 ppm))的电阻响应,以评估交叉敏感性和湿度干扰。主成分分析PCA的结果表明,已经实现了对H2和NOx的可靠检测和分类。

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