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首页> 外文期刊>Journal of analytical chemistry >Determination of Nitrogen Dioxide by Thin-Film Chemical Sensors Based on CdxPb1-xS
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Determination of Nitrogen Dioxide by Thin-Film Chemical Sensors Based on CdxPb1-xS

机译:基于CDXPB1-XS的薄膜化学传感器测定二氧化氮

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摘要

The results of a study of sensors based on thin semiconductor films of CdxPb1 - xS solid solutions intended for the determination of nitrogen dioxide in air are described. For a comparative assessment of the composition, morphology, and functional properties of the films, they were synthesized from reaction mixtures containing various cadmium salts. It was found that the maximum response is provided by layers obtained using cadmium acetate, in which the composition of the solid solution differs in the maximum supersaturation level in CdS. The films were formed of crystallites with average sizes of similar to 200 nm. When the concentration of nitrogen dioxide in air was 0.05.200 mg/m(3), the relative change in the ohmic resistance of sensors ranged from 8 to 80%. It was shown that the threshold concentration of NO2 in air was about 0.02 mg/m(3). The reversible nature of the gas adsorption process opens a possibility for the creation of reusable chemical sensors based on CdxPb1 - xS films, differing in a relatively low threshold concentration of NO2 detection and selective response in the presence of significantly higher concentrations of O-2, CO2, and H-2.
机译:描述了基于CDXPB1 - XS固溶体的薄半导体膜的传感器研究结果,用于测定空气中的二氧化氮。对于薄膜的组合物,形态和功能性的对比评估,它们由含有各种镉盐的反应混合物合成。发现最大响应由使用乙酸镉获得的层提供,其中固体溶液的组成在Cd中的最大过饱和水平中不同。薄膜由具有与200nm相似的平均尺寸的微晶形成。当空气中的二氧化氮浓度为0.05.200mg / m(3)时,传感器的欧姆抗性的相对变化范围为8至80%。结果表明,空气中NO 2的阈值浓度为约0.02mg / m(3)。气体吸附过程的可逆性为基于CDXPB1-XS薄膜的可重复使用的化学传感器开辟了可能性的可能性,在较高浓度的O-2存在下,在NO 2检测和选择性反应中的相对低的阈值浓度不同, CO2和H-2。

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