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Electrochemical Synthesis and Characterization of Multi-walled Carbon Nanotubes/Polypyrrole and Polypyrrole Hollow Nanotubes

机译:碳纳米管/聚吡咯和聚吡咯空心纳米管的电化学合成与表征

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摘要

We report the electrochemical synthesis and characterization of hybrid structures composed by hollow nanotubes of polypyrrole and core-shell composites of multi-walled carbon nanotubes (MWCNTs) coated by polypyrrole (PPy). The synthesis of these systems is critically dependent on relative concentration of carbon nanotubes (introduced as a template for polymerization) and affects the level of conductivity of media, the diameter and relative roughness of synthesized nanotubes. The competition induced by polymerization on the surface of different templates (aggregates of methyl orange and MWCNT) allows that smooth structures can be obtained, minimizing the synthesis of granules of polypyrrole, in a process that affects the morphology, thermal and electrical properties of synthesized materials. As a result, the impedance of mixed composite is lower than the other obtained for each system (MWCNT and hollow nanotubes of PPy), in an indication that synergistic interaction is favored during the synthesis.
机译:我们报道了由聚吡咯的空心纳米管和由聚吡咯(PPy)包覆的多壁碳纳米管(MWCNT)的核-壳复合物组成的杂化结构的电化学合成和表征。这些系统的合成关键取决于碳纳米管的相对浓度(作为聚合反应的模板引入),并影响介质的电导率水平,合成纳米管的直径和相对粗糙度。不同模板(甲基橙和MWCNT的聚集体)表面上聚合引发的竞争使得可以获得光滑的结构,从而在影响合成材料的形态,热和电性能的过程中将聚吡咯颗粒的合成减至最少。结果,混合复合材料的阻抗低于每个系统(MWCNT和PPy的中空纳米管)获得的阻抗,这表明在合成过程中有利于协同相互作用。

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