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Electrical Transport Over Wide Temperature Range In Doped And Undoped Polypyrrole

机译:掺杂和未掺杂的聚吡咯宽温度范围内的电气运输

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Polypyrrole was synthesized by chemical oxidation method by varying oxidant to monomer molar ratio for the optimization of electrical conductivity without using any external dopant. The conductivity in doped polypyrrole reached up to a maximum value of 7.2S/cm. Neutralization of doped polypyrrole was done with aqueous ammonium hydroxide and three orders of reduced conductivity was obtained in neutral polypyrrole. Doping and neutralization of polypyrrole samples was supported by FTIR spectroscopy. Doped and undoped samples of polypyrrole were then electrically characterized over wide temperature range of 10-300K. Stronger and weak temperature dependence of conductivity was revealed by undoped and doped polypyrrole samples respectively. An effort has been made to explore the electrical transport in doped and undoped polypyrrole by charge transport models. The experimental data obeys Kivelson's hopping model in temperature range of 60-300K and fluctuation assisted tunneling was dominant conduction mechanism below 80K.
机译:通过化学氧化方法通过改变氧化剂来合成聚吡咯,以便在不使用任何外部掺杂剂的情况下优化导电性的单体摩尔比合成。掺杂聚吡咯的电导率达到最大值为7.2s / cm。用氢氧化铵水溶液完成掺杂滤萘酚的中和,并在中性聚吡咯中获得三种降低的导电性。通过FTIR光谱支持滤萘样品的掺杂和中和。然后在10-300K的宽温度范围内电表征掺杂和未掺杂的聚吡咯样品。不掺杂和掺杂的聚吡咯样品揭示了电导率的更强和弱的温度依赖性。已经努力通过电荷传输模型探索掺杂和未掺杂的聚吡咯中的电气运输。实验数据Obeys Kivelson在60-300K温度范围内的跳跃模型和波动辅助隧道的主导传导机制在80k以下。

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