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Recent Trends and Developments in Graphene/Conducting Polymer Nanocomposites Chemiresistive Sensors

机译:石墨烯/导电聚合物纳米复合材料化切削传感器的最新趋势和发展

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摘要

The use of graphene and its derivatives with excellent characteristics such as good electrical and mechanical properties and large specific surface area has gained the attention of researchers. Recently, novel nanocomposite materials based on graphene and conducting polymers including polyaniline (PANi), polypyrrole (PPy), poly (3,4 ethyldioxythiophene) (PEDOT), polythiophene (PTh), and their derivatives have been widely used as active materials in gas sensing due to their unique electrical conductivity, redox property, and good operation at room temperature. Mixing these two materials exhibited better sensing performance compared to pure graphene and conductive polymers. This may be attributed to the large specific surface area of the nanocomposites, and also the synergistic effect between graphene and conducting polymers. A variety of graphene and conducting polymer nanocomposite preparation methods such as in situ polymerization, electropolymerization, solution mixing, self-assembly approach, etc. have been reported and utilization of these nanocomposites as sensing materials has been proven effective in improving the performance of gas sensors. Review of the recent research efforts and developments in the fabrication and application of graphene and conducting polymer nanocomposites for gas sensing is the aim of this review paper.
机译:石墨烯及其衍生物具有优异的特性,如良好的电气和机械性能和大的比表面积,因此研究人员的注意力。近来,基于石墨烯的新型纳米复合材料和导电聚合物,包括聚苯胺(PANI),聚吡咯(PPY),聚(3,4乙醛丙酮),聚噻吩(PEDOT),聚噻吩(PETH),它们的衍生物被广泛地用作气体中的活性材料由于其独特的导电性,氧化还原性能和室温良好的操作感测。与纯石墨烯和导电聚合物相比,混合这两种材料表现出更好的感测性能。这可能归因于纳米复合材料的大的比表面积,以及石墨烯和导电聚合物之间的协同效应。已经报道了各种石墨烯和传导聚合物纳米复合材料制备方法,例如原位聚合,电结合,溶液混合,自组装方法等,并利用这些纳米复合材料作为感测材料,已被证明有效地改善气体传感器的性能。 。回顾最近石墨烯的制造和应用中的研究努力和发展,用于气体传感的聚合物纳米复合材料是本综述纸的目的。

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