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首页> 外文期刊>Advanced Functional Materials >Rich Phase Behavior In A Supramolecular Conducting Material Derived From An Organogelator
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Rich Phase Behavior In A Supramolecular Conducting Material Derived From An Organogelator

机译:源自有机胶凝剂的超分子导电材料的富相行为

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摘要

Organic conducting fiber-like materials hold great promise for the development of nanowtres that can act as connections in miniature electronic devices, as an alternative to inorganic nanometer scale structures. This article presents a conducting organic tetrathiafufvalene-based supramolecular material which possesses a rich phase behavior with different packing of the molecules in the different forms, evidenced by electron spin resonance (ESR) spectroscopy. The distinct phases of conducting nanofibers can be easily fabricated through the temperature control of their preparation process from a xerogel by doping with iodine vapors. A total of four conducting phases have been identified conclusively using ESR spectroscopy as the key analytical tool. Three of the phases show a good long-term stability and areas in which the I-V curves have ohmic behavior when studied by current sensing (conducting) AFM. They offer promise for applications where electrical nanometer scale connections are required.
机译:类有机导电纤维材料有望发展纳米重量,它可以作为微型电子设备中的连接,替代无机纳米级结构。本文介绍了一种导电的基于四硫杂富瓦烯的超分子材料,该材料具有丰富的相行为,分子以不同的形式堆积,通过电子自旋共振(ESR)光谱证明。导电纳米纤维的不同相可以通过掺杂碘蒸气,通过干凝胶的制备过程的温度控制而容易地制备。使用ESR光谱作为主要分析工具,最终确定了总共四个导电阶段。当通过电流感测(导电)原子力显微镜研究时,三个阶段显示出良好的长期稳定性,并且其中I-V曲线具有欧姆特性。它们为需要电纳米级连接的应用提供了希望。

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