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Influence of Oxidant on Electrical Properties of the Polypyrrole-Coated Cotton Fabrics

机译:氧化剂对聚吡咯涂层棉织物电性能的影响

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The polypyrrole-coated cotton fabrics were prepared via in situ chemical oxidative polymerization. The polymerization time of 120 min and reaction temperature of 25°C were employed in this study. The major factors on electricities of the fabrics, including types of oxidants and molar ratio of pyrrole monomer to oxidant, were studied. Ferric trichloride hexahydrate (FeCl_3-6H_2O), ammonium persulfate ((NH_4)_2S_2O_8) and sodium periodate (NaIO_4) were selected to carry out the synthesis of polypyrrole. When FeCl_3-6H_2O acted as oxidant, the optimum conductivity of 4×10~(-3) S-cm~(-1) could be obtained by changing molar ratio of Py to FeCl_3-6H_2O. By contrast, the highest conductivity of fabrics which used ((NH_4)_2S_2O_8 as oxidant was 1.8×10~(-4) S-cm~(-1). The evolution of resistivities, morphology, surface chemistry and mechanical strength were characterized by a four-points probe resistivity system, scanning electron microscopy (SEM), fourier transform infrared spectroscopy (FTIR) and mechanical test instrument.
机译:通过原位化学氧化聚合制备聚吡咯涂层棉织物。本研究采用120分钟120分钟的聚合时间和25℃的反应温度。研究了织物电力的主要因素,包括吡咯单体对氧化剂的氧化剂和摩尔比。选择三氯化二氯化六水合物(FECL_3-6H_2O),选择过硫酸铵((NH_4)_2S_2O_8)和钠碘酸钠(NAIO_4)以进行聚吡咯的合成。当FECL_3-6H_2O充当氧化剂时,通过将PY的摩尔比改变为FECL_3-6H_2O,可以获得4×10〜(-3)S-CM〜(-1)的最佳导电率。相比之下,使用((NH_4)_2S_2O_8作为氧化剂的织物的最高导电性为1.8×10〜(-4)S-cm〜(-1)。特征在于抗电阻,形态,表面化学和机械强度的演变四点探针电阻率系统,扫描电子显微镜(SEM),傅里叶变换红外光谱(FTIR)和机械测试仪器。

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