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首页> 外文期刊>Journal of Applied Polymer Science >Conducting composite film based on polypyrrole and crosslinked cellulose
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Conducting composite film based on polypyrrole and crosslinked cellulose

机译:基于聚吡咯和交联纤维素的导电复合膜

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摘要

Polypyrrole/crosslinked cellulose conductive composite films were prepared by vapor-phase polymerization of pyrrole on the silicon crosslinked cellulose network using anhydrous ferric chloride as oxidant. The properties of the composite film depend on their synthetic conditions such as the amount of ferric chloride and tetraethyl orthosilicate crosslinker, the reaction time, the solvent, etc. Interestingly, it was found that the conductivity was strongly affected by the nature of the solvents and their amount in pyrrole solution. When the weight ratio of methanol/pyrrole is 1 1, the conductivity was as high as 1.1 S/cm, increased by two orders of magnitude compared to that without solvent, and the mechanical properties was good.
机译:聚吡咯/交联纤维素导电复合膜的制备是通过无水氯化铁作为氧化剂在硅交联纤维素网络上进行吡咯的气相聚合。复合膜的性能取决于它们的合成条件,例如氯化铁和原硅酸四乙酯交联剂的用量,反应时间,溶剂等。有趣的是,发现电导率受溶剂性质的强烈影响。在吡咯溶液中的量。当甲醇/吡咯的重量比为1 1时,电导率高达1.1 S / cm,与没有溶剂的电导率相比增加了两个数量级,并且机械性能良好。

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