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首页> 外文期刊>ACS nano >Conductance modulation in tetraaniline monolayers by HCl-doping and by field-enhanced dissociation of H_2O
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Conductance modulation in tetraaniline monolayers by HCl-doping and by field-enhanced dissociation of H_2O

机译:HCl掺杂和H_2O的场增强离解作用调节四苯胺单层中的电导率

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摘要

Oligoanilines are interesting candidates for organic electronics, as their conductivity can be varied by several orders of magnitude upon protonic doping. Here we demonstrate that tetraaniline self-assembled monolayers exhibit an unprecedented conductance on/off ratio of ~710 (at +1 V) upon doping of the layers from the emeraldine base to the emeraldine salt form. Furthermore, a pronounced asymmetry in the current-voltage characteristics indicates dynamic doping of the tetraaniline layer by protons generated through field-enhanced dissociation of water molecules, a phenomenon known as the second Wien effect. These results point toward oligoanilines as promising substitutes for polyaniline layers in next-generation thin film devices.
机译:寡苯胺是有机电子学的有趣候选物,因为在质子掺杂后它们的电导率可以变化几个数量级。在这里,我们证明了四苯胺自组装单层在从祖母绿碱到祖母绿盐形式掺杂时展现出前所未有的电导通/断比,约为710(+1 V)。此外,电流-电压特性中明显的不对称性表明通过水分子的场增强离解产生的质子对四苯胺层进行动态掺杂,这种现象被称为第二维恩效应。这些结果表明,低聚苯胺是下一代薄膜器件中聚苯胺层的有希望的替代品。

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