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首页> 外文期刊>Polymer bulletin >A novel gas sensor from crystalline polymer-grafted carbon black: responsibility of electric resistance of composite from crystalline polymer-grafted carbon black against solvent vapor
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A novel gas sensor from crystalline polymer-grafted carbon black: responsibility of electric resistance of composite from crystalline polymer-grafted carbon black against solvent vapor

机译:结晶聚合物接枝炭黑的新型气体传感器:结晶聚合物接枝炭黑的复合材料对溶剂蒸气的电阻作用

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摘要

Crystalline polymers, such as poly(#epsilon#-caprolactone) (PCL), poly(ethylene adipate) (PEA), and polyethylene (PE), were successfully grafted onto carbon black surface by direct condensation of terminal groups of these polymers with carboxyl groups on the surface using N,N'-dicyclohexylcarbodiimide as a condensing agent. The electric resistance of a composite prepared from these crystalline polymer-grafted carbon black drastically increased to 10~4-10~5 times of initial resistance in good solvent vapor of grafted polymer and returned to initial resistance when it was transferred into dry air. However, the change of electric resistance of the composite hardly observed in poor solvent vapor, These results suggest that these composite can be applied as a novel gas sensor.
机译:结晶聚合物,例如聚(ε-己内酯)(PCL),聚己二酸乙二酯(PEA)和聚乙烯(PE),通过将这些聚合物的末端基团与羧基直接缩合,成功地接枝到了炭黑表面上N,N′-二环己基碳二亚胺作为缩合剂在表面上形成基团。在接枝聚合物的良好溶剂蒸汽中,由这些结晶聚合物接枝的炭黑制备的复合材料的电阻急剧增加至初始电阻的10〜4-10〜5倍,并在转移到干燥空气中后恢复到初始电阻。但是,在不良的溶剂蒸气中几乎没有观察到复合材料的电阻变化。这些结果表明这些复合材料可以用作新型的气体传感器。

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