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Electric field activated nonlinear anisotropic charge transport in doped polypyrrole

机译:掺杂聚吡咯中电场激活的非线性各向异性电荷传输

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摘要

Electric field activated nonlinear transport is investigated in polypyrrole thin film in both in-plane and out-of-plane geometries down to 5 K and strong anisotropy is observed. A morphological model is suggested to explain the anisotropy through inter-chain and intra-chain transport. The deviation from the variable range hopping at low temperature is accounted by fluctuation assisted transport. From Zabrodaskii plots, it is found that electric field can tune the transport from insulating to metallic regime. Glazman–Matveev model is used to describe the nonlinear conduction. Field scaling analysis shows that conductance data at different temperature falls on to a single curve. Nonlinearity exponent, mT and characteristic length, LE are estimated to characterize the transport in both the geometries.
机译:研究了在低至5 K的面内和面外几何形状的聚吡咯薄膜中电场激活的非线性传输,并观察到强各向异性。建议使用形态学模型来解释通过链间和链内运输的各向异性。与低温下可变范围跳跃的偏差是由起伏辅助运输引起的。从Zabrodaskii图中发现,电场可以调节从绝缘状态到金属状态的传输。 Glazman–Matveev模型用于描述非线性传导。现场定标分析表明,不同温度下的电导数据落在一条曲线上。估计非线性指数mT和特征长度LE来表征两种几何结构中的传输。

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