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首页> 外文期刊>JETP Letters >Electric-field-induced metastable state of electrical conductivity in polyaniline nanoparticles polymerized in nanopores of a MIL-101 dielectric matrix
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Electric-field-induced metastable state of electrical conductivity in polyaniline nanoparticles polymerized in nanopores of a MIL-101 dielectric matrix

机译:电场诱导的MIL-101介电基质的纳米孔中聚合的聚苯胺纳米颗粒的电导率的亚稳态

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摘要

Conducting polyaniline PANI has been obtained inside dielectric nanoporous coordination polymer MIL-101. The application of an electric field transforms both bulk PANI and nanocomposite PANI@MIL to a metastable high-conductive state. After a decrease in the applied electric field, PANI and PANI@MIL relax toward a state low-conductive stable by the law ln[sigma(t)/sigma(tau)] = -(t/tau) (n) , which is typical of disordered systems with the characteristic time tau of about six hours for PANI and with three times larger time for composite PANI@MIL. The temperature dependences of the electrical conductivity sigma(T) of the samples in both high- and low-ohmic states are described by the fluctuation-induced conductivity model. Significant changes in relaxation processes and in the parameters of the fluctuation-induced tunneling conduction in nanocomposite PANI@MIL are due to a decrease in the sizes of polyaniline particles in the MIL-101 matrix to nanometers.
机译:已在电介质纳米孔配位聚合物MIL-101中获得了导电聚苯胺PANI。电场的施加将块状PANI和纳米复合材料PANI @ MIL都转换为亚稳态的高导电态。在施加的电场减小之后,PANI和PANI @ MIL通过定律ln [sigma(t)/ sigma(tau)] =-(t / tau)(n)向低态稳定态弛豫。典型的无序系统,其PANI的特征时间tau约为6个小时,而复合PANI @ MIL的特征时间为3倍。高和低欧姆状态下样品的电导率sigma(T)的温度依赖性通过波动感应电导率模型来描述。纳米复合材料PANI @ MIL中弛豫过程和由波动引起的隧穿传导参数的显着变化是由于MIL-101基质中聚苯胺颗粒尺寸减小至纳米所致。

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