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Effect of Ammonia Based Deprotonation on the variable range hopping conduction in Polypyrrole Nanotubes

机译:基于氨基乳溶解对聚吡咯纳米管中可变范围跳频传导的影响

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This paper reports the facial synthesis of polypyrrole (PPy) nanotubes by an anionic azo dye {sodium 4-[4-(dimethyl-amino)-phenyldiazo] phenylsulfonatel assisted chemical oxidation method and their deprotonation by liquid ammonia treatment. Scanning and transmission electron microscopy studies reveal the synthesis of PPy nanotubes of diameters similar to 155 nm and their lengths are found to be about 2-3 mu m. The deprotonation of PPy nanotubes by liquid as well as gaseous ammonia has been experimentally confirmed by Raman and FTIR studies. These spectroscopic techniques suggest the proton transfer based mechanism for deprotonation of the PPy nanotubes. The deprotonation of PPy nanotubes has also been confirmed through the electrical measurements carried out in the presence of ammonia gas at different ppm levels. Furthermore, the effect of deprotonation on the charge transport properties of PPy nanotubes has also been investigated. The temperature dependent conductivity measurements are performed on both the pristine as well as deprotonated (by liquid ammonia) PPy nanotubes in a wide range of temperature (77-400 K) and analyzed for different conduction mechanisms. However, both the samples are found to follow Mott's variable range hopping conduction process in three dimensions (3D-VRH) for the charge transport. The conduction properties of both the samples are further investigated in terms of Mott's 3D-VRH variables such as Mott's characteristic temperature, hopping distance, hopping energy, and density of states, etc.
机译:本文通过阴离子Azo染料释放聚吡咯(PPY)纳米管的面部合成{钠4- [4-(二甲基 - 氨基)-phenyldiazo]苯磺酸辅助化学氧化方法及其通过液氨处理的去质子化。扫描和透射电子显微镜研究揭示了与155nm相似的直径的PPY纳米管的合成,并且它们的长度被发现为约2-3μm。通过拉曼和FTIR研究通过液体以及气态氨的PPY纳米管的去质子化已经通过Raman和FTIR研究进行了实验证实。这些光谱技术表明了基于质子转移的基于质子转移的机制,用于去质子纳米管的去质子化。通过在不同PPM水平的氨气存在下进行的电测量,还通过了在不同PPM水平下进行的电测量来证实PPY纳米管的去质子化。此外,还研究了去质子化对PPY纳米管的电荷运输性能的影响。在宽范围的温度(77-400k)中,在原始和质量(通过液态氨)ppy纳米管中进行温度依赖性电导率测量,并分析不同的传导机构。然而,发现两个样本都在三维(3D-VRH)中遵循Mott的可变范围跳跃导通过程,以进行电荷传输。在Mott的3D-VRH变量方面进一步研究了样品的传导性质,例如Mott的特征温度,跳跃距离,跳跃能量和状态密度等。

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