首页> 外文期刊>Collection of Czechoslovak Chemical Communications >A methane sensor based on poly[3 ',4 '-dihexyl-4,4 ''-bis(pentyloxy)-2,2 ': 5 ',2 ''-terthiophene]
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A methane sensor based on poly[3 ',4 '-dihexyl-4,4 ''-bis(pentyloxy)-2,2 ': 5 ',2 ''-terthiophene]

机译:基于聚[3',4'-二己基-4,4''-双(戊氧基)-2,2':5',2''-对噻吩的甲烷传感器

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摘要

3,4'-Dihexyl- 4,4"-bis(pentyloxy)-2,2':5',2"-terthiophene was electrochemically polymerized on gold interdigitated electrodes to investigate the impedance variation of the polymer in the exposure to air/methane atmospheres. The higher sensitivity of poly[3',4'-dihexyl-4,4" -bis( pentyloxy) 2,2';5',2"-terthiophene] (PHPT) to methane was observed at frequencies of about 100 Hz. The PHPT impedance decreases when the CH4 concentration increases and shows the highest sensitivity at the lowest methane concentrations. After each concentration step, the impedance decreased as the square root of time indicating that the response time of the PHPT-based sensor was controlled by diffusion of the gas into the material. It is suggested that the absorption of methane into the polymer film affects the rate of interchain charge hopping. [References: 7]
机译:3,4'-二己基-4,4“-双(戊氧基)-2,2':5',2”-对噻吩在指叉金电极上进行电化学聚合,以研究聚合物在暴露于空气/甲烷气氛。在约100 Hz的频率下观察到了聚[3',4'-二己基-4,4“-双(戊氧基)2,2'; 5',2”-对噻吩](PHPT)对甲烷的更高敏感性。当CH4浓度增加时,PHPT阻抗降低,并且在最低的甲烷浓度下显示最高的灵敏度。在每个浓缩步骤之后,阻抗作为时间的平方根减小,这表明基于PHPT的传感器的响应时间受气体扩散到材料中的控制。建议将甲烷吸收到聚合物膜中会影响链间电荷跳跃的速率。 [参考:7]

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