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Electrical Conductivity Response of Poly(Phenylene-vinylene)/Zeolite Composites Exposed to Ammonium Nitrate

机译:硝酸铵暴露的聚苯乙撑/沸石复合材料的电导率响应

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摘要

Poly(p-phenylenevinylene) (PPV) was chemically synthesized via the polymerization of p-xylene-bis(tetrahydrothiophenium chloride) monomer and doped with H2SO4. To improve the electrical conductivity sensitivity of the conductive polymer, Zeolites Y (Si/Al = 5.1, 30, 60, 80) were added into the conductive polymer matrix. All composite samples show definite positive responses towards NH4NO3. The electrical conductivity sensitivities of the composite sensors increase linearly with increasing Si/Al ratio: with values of 0.201, 1.37, 2.80 and 3.18, respectively. The interactions between NH4NO3 molecules and the PPV/zeolite composites with respect to the electrical conductivity sensitivity were investigated through the infrared spectroscopy.
机译:通过对二甲苯-双(氯化四氢噻吩)单体的聚合反应化学合成聚对苯撑亚乙烯基(PPV),并用H2SO4掺杂。为了提高导电聚合物的电导率敏感性,将沸石Y(Si / Al = 5.1、30、60、80)添加到导电聚合物基体中。所有复合样品均显示出对NH4NO3的肯定阳性反应。复合传感器的电导率灵敏度随Si / Al比的增加而线性增加:分别为0.201、1.37、2.80和3.18。通过红外光谱研究了NH4NO3分子与PPV /沸石复合物之间的相互作用对电导率敏感性的影响。

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