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Current-voltage characteristics of individual conducting polymer nanotubes and nanowires

机译:单个导电聚合物纳米管和纳米线的电流-电压特性

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摘要

We report the current-voltage (Ⅰ-Ⅴ) characteristics of individual polypyrrole nanotubes and poly(3,4-ethylenedioxythiophene) (PEDOT) nanowires in a temperature range from 300 K to 2 K. Considering the complex structures of such quasi-one-dimensional systems with an array of ordered conductive regions separated by disordered barriers, we use the extended fluctuation-induced tunneling (FIT) and thermal excitation model (Kaiser expression) to fit the temperature and electric-field dependent Ⅰ-Ⅴ curves. It is found that the Ⅰ-Ⅴ data measured at higher temperatures or higher voltages can be well fitted by the Kaiser expression. However, the low-temperature data around the zero bias clearly deviate from those obtained from this model. The deviation (or zero-bias conductance suppression)could be possibly ascribed to the occurrence of the Coulomb-gap in the density of states near the Femi level and/or the enhancement of electron-electron interaction resulting from nanosize effects, which have been revealed in the previous studies on low-temperature electronic transport in conducting polymer films, pellets and nanostructures. In addition,similar Ⅰ-Ⅴ characteristics and deviation are also observed in an isolated K0.27MnO2 nanowire.
机译:我们报道了单个聚吡咯纳米管和聚(3,4-乙撑二氧噻吩)(PEDOT)纳米线在300 K至2 K的温度范围内的电流-电压(Ⅰ-Ⅴ)特性。考虑到这类准一在具有由无序势垒隔开的有序导电区域阵列的三维系统中,我们使用扩展的波动诱导隧穿(FIT)和热激发模型(Kaiser表达式)来拟合温度和电场相关的Ⅰ-Ⅴ曲线。通过Kaiser表达式可以很好地拟合在较高温度或较高电压下测得的Ⅰ-Ⅴ数据。但是,零偏附近的低温数据明显偏离了从该模型获得的数据。偏差(或零偏压电导抑制)可能归因于在费米能级附近的状态密度中发生库仑间隙和/或由于纳米尺寸效应而引起的电子-电子相互作用的增强,这已被揭示。在先前关于低温电子传输在导电聚合物薄膜,颗粒和纳米结构中的研究中。此外,在分离的K0.27MnO2纳米线中也观察到相似的Ⅰ-Ⅴ特性和偏差。

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  • 来源
    《中国物理:英文版》 |2009年第6期|2514-2522|共9页
  • 作者单位

    College of Physics Science,Qingdao University,Qingdao 266071,China;

    College of Physics Science,Qingdao University,Qingdao 266071,China;

    College of Physics Science,Qingdao University,Qingdao 266071,China;

    Institute of Physics,Chinese Academy of Sciences,Beijing 100190,China;

    Institut des Matériaux Jean Rouxel,Université de Nantes,44322 Nantes,CNRS,France;

    Institute of Physics,Chinese Academy of Sciences,Beijing 100190,China;

    Institute of Chemistry,Chinese Academy of Sciences,Beijing 100190,China;

  • 收录信息 中国科学引文数据库(CSCD);中国科技论文与引文数据库(CSTPCD);
  • 原文格式 PDF
  • 正文语种 chi
  • 中图分类 物理学;
  • 关键词

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