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Temperature effects on polymer-carbon composite sensors: evaluating the role of polymer molecular weight and carbon loading

机译:聚合物 - 碳复合传感器的温度效应:评估聚合物分子量和碳载荷的作用

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We report the effect of temperature coupled with varying polymer molecular weight and carbon loadings on the performance of polymer-carbon black composite films, used as sensing media in the JPL Electronic Nose (ENose). While bulk electrical properties of polymer composites have been studied, with mechanisms of conductivity described by connectivity and tunneling, it is not fully understood how environmental conditions and intrinsic polymer and filler properties affect polymer composite sensor characteristics and responses. Composites of polyethylene oxide (PEO)-carbon black (CB) considered here include PEO polymers with molecular weights of 20K, 600 K and 1M. The effects of polymer molecular weight on the percolation threshold of PEO-carbon composite and incremental sensor temperature effects on PEO-carbon sensor response were investigated. Results show a correlation between the polymer molecular weight and percolation threshold. Changes in sensor properties as a function of temperature are also observed at different carbon loadings; these changes may be explained by a change in conduction mechanism.
机译:我们报告了温度耦合与不同聚合物分子量和碳载荷对聚合物 - 炭黑复合膜的性能的影响,用作JPL电子鼻中的感测介质(Enose)。虽然已经研究了聚合物复合材料的块状电性能,但通过连接和隧道描述的电导率机制,不完全理解环境条件和内在聚合物和填充性能如何影响聚合物复合传感器特性和反应。这里考虑的聚环氧乙烷(PEO) - 碳黑(CB)包括具有20k,600k和1m的分子量的PEO聚合物。研究了聚合物分子量对PEO-碳复合材料的渗透阈值和对PEO-碳传感器响应的增量传感器温度效应的影响。结果表明聚合物分子量与渗透阈值之间的相关性。在不同的碳载量下也观察到作为温度函数的传感器性能的变化;可以通过传导机制的变化来解释这些改变。

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