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Morphological, structural and electrical properties of polypyrrole nanocoated bamboo cellulose fibre

机译:聚吡咯纳米包覆竹纤维素纤维的形貌,结构和电性能

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Bamboo cellulose fibres have been coated with polypyrrole and the coated fibres are then characterized for various properties. The changes in surface morphology and particle distribution are studied by scanning and transmission electron microscopy which indicate the formation of nano-coating of polypyrrole over the fibre surface, as the average diameter of the particles forming the surface layer is found 50 nm. Fourier transform infrared spectroscopy reveals that the chemical structure of the natural fibres remains unchanged even after the nano coating, though the individual characteristics of pyrrole appears therein. Electrical resistance of the coated fibres, measured by two probe method, shows decreasing trend with increasing pyrrole concentration. The value ranges from 1075 KO cm(-1) to 0.159 K Omega cm(-1) from 0.1% to 5% pyrrole. Further, it shows Ohmic nature for both the coated and uncoated fibres. Dielectric behavior of the current-voltage (I-V) plots of the coated fibres exhibits highly dispersive dielectric loss and similar behavior in its AC conductance, at low frequency range up to 7 kHz; beyond which its conductance is stabilized.
机译:竹纤维素纤维已经用聚吡咯包覆,然后表征了包覆纤维的各种性能。通过扫描和透射电子显微镜研究了表面形态和颗粒分布的变化,这表明在纤维表面上形成了聚吡咯的纳米涂层,因为发现形成表面层的颗粒的平均直径为50nm。傅立叶变换红外光谱表明,即使在纳米涂层之后,天然纤维的化学结构仍保持不变,尽管其中出现了吡咯的独特特征。通过两种探针法测量的涂覆纤维的电阻显示出随着吡咯浓度的增加而降低的趋势。值范围从1075 KO cm(-1)到0.159 K Omega cm(-1)从0.1%到5%的吡咯。此外,它对于涂覆和未涂覆的纤维均显示出欧姆性质。涂层纤维的电流-电压(I-V)曲线的介电行为在高达7 kHz的低频范围内表现出高度分散的介电损耗,并且在其AC电导中表现出相似的行为。超过此值,其电导将稳定下来。

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