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The Comparative Study on Vapor-Polymerization and Pressure-dependent Conductance Behavior in Polypyrrole-hybridized Membranes

机译:聚吡咯杂化膜气相聚合和压力依赖性电导行为的比较研究

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摘要

In this study, commercially available cellulose membranes were hybridized with conjugated polymer via vapor-phase polymerization using pyrrole and iron chloride as a monomer and oxidant, respectively. The iron (III) chloride layer dip-coated on the hydrophilic cellulose surface oxidized the vaporized pyrrole monomer leading to the polypyrrole-cellulose hybrid membrane. The conductivity of hybrid membrane was optimized by varying the oxidant concentration and the monomer vapor exposure time. The various surface characterizations of polypyrrole-cellulose hybrid membrane show that the conductive polypyrrole layer was uniformly deposited onto the surface of cellulose fibrous networks unlike the polypyrrole-nylon hybrid membrane prepared in the similar way. The polypyrrole-incorporated cellulose networks exhibits steeper electrical conductance increase over the vertical pressure than its nylon counterpart. Our result suggests that the polypyrrole-cellulose hybrid membrane can be applicable for a disposable high-load pressure sensor.
机译:在这项研究中,分别使用吡咯和氯化铁作为单体和氧化剂,通过气相聚合将可商购的纤维素膜与共轭聚合物杂交。浸涂在亲水纤维素表面的氯化铁(III)层氧化了汽化的吡咯单体,从而形成了聚吡咯-纤维素杂化膜。通过改变氧化剂浓度和单体蒸气暴露时间来优化杂化膜的电导率。聚吡咯-纤维素杂化膜的各种表面特征表明,导电聚吡咯层均匀地沉积在纤维素纤维网络的表面上,与以类似方式制备的聚吡咯-尼龙杂化膜不同。并入聚吡咯的纤维素网络在垂直压力下比其尼龙对应物表现出更陡峭的电导增加。我们的结果表明,聚吡咯-纤维素杂化膜可用于一次性高负荷压力传感器。

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