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Conductive carbon black-filled polymethacrylate composites as gas sensing materials: Effect of glass transition temperature

机译:导电炭黑填充的聚甲基丙烯酸酯复合材料作为气敏材料:玻璃化温度的影响

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摘要

To reveal the influence of glass transition temperature of matrix polymer on electric resistivity and electrical response to organic solvent vapors of carbon black (CB) -filled polymer composites, conductive CB/poly (methyl methacrylate), CB/poly(butyl methacrylate) and CB/poly(2-ethylhexyl methacrylate) composites were fabricated by polymerization filling. It is found that the composites obtained exhibit a lower percolation threshold and a slower electrical response rate when the glass transition temperature of the matrix polymer is higher. Because the dispersion status of CB particles in the composites is related to the glass transition temperature or viscosity of the matrix polymer, and influences the composite conductivity. Low viscosity of the matrix polymer would certainly benefit the diffusion of solvent molecules in the matrix polymer and decrease the response time of the composites against organic vapors. These results would help to choose a suitable polymer as the polymer matrix and to understand the electrical response behavior of the composites as promising gas-sensing materials.
机译:为了揭示基体聚合物的玻璃化转变温度对填充炭黑(CB)的聚合物复合材料,导电性CB /聚甲基丙烯酸甲酯,CB /聚甲基丙烯酸丁酯和CB的电阻率和对有机溶剂蒸气的电响应的影响通过聚合填充制备/聚(甲基丙烯酸2-乙基己酯)复合材料。发现当基质聚合物的玻璃化转变温度较高时,获得的复合物表现出较低的渗透阈值和较慢的电响应速率。因为CB颗粒在复合材料中的分散状态与玻璃化转变温度或基体聚合物的粘度有关,并影响复合材料的电导率。低粘度的基体聚合物肯定会有利于溶剂分子在基体聚合物中的扩散,并减少复合材料对有机蒸气的响应时间。这些结果将有助于选择合适的聚合物作为聚合物基体,并了解作为有前景的气敏材料的复合材料的电响应行为。

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