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Electrosynthesis of polypyrrole nano/micro structures using an electrogenerated oriented polypyrrole nanowire array as framework

机译:使用电流取向聚吡咯纳米线阵列的聚吡咯纳米/微结构作为框架的电动合成

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The purpose of this paper is to show that it is possible to increase the diameter and length of the nanostructures of a framework formed of oriented polypyrrole nanowires that has been prepared by a templateless electrochemical method based on the use of a pyrrole solution containing a high concentration of weak-acid anion and a low concentration of non-acidic anion. The dimensions of the initial nanowires are increased by performing an additional electrosynthesis in a 'classical' monomer solution. Depending on the polarization time of this last synthesis (a few tens of seconds), wires with various diameters, from one hundred up to several hundred nanometers, are obtained. In addition to the variation of the nanowire size, these findings confirm, as outlined in the reaction mechanism we have proposed, that the base of the nanowires is surrounded by a thin non-conductive polymer i.e. by an overoxidized polypyrrole film. Actually this paper shows a proof-of-concept. Indeed one can imagine that the second polymeric electrodeposit could be performed using an organic monomer solution, using functionalized pyrrole monomer to fabricate a biosensor having large specific area, and/or using anions which could be drugs. (c) 2018 Elsevier Ltd. All rights reserved.
机译:本文的目的是表明,可以通过基于含有高浓度的吡咯溶液的吡咯溶液,增加由定向的聚吡咯纳米线形成的框架的纳米结构的直径和长度。弱酸阴离子和低浓度的非酸性阴离子。通过在'经典'单体溶液中进行额外的电织剂来增加初始纳米线的尺寸。取决于该最后合成的偏振时间(几十秒),获得具有各种直径的电线,从一百多达数百纳米。除了纳米线尺寸的变化之外,这些发现还在提出的反应机理中概述,即纳米线的底部被薄的非导电聚合物I.E.E。通过过氧化的聚吡咯膜。实际上,本文显示了概念验证。实际上,可以想象第二种聚合物电沉积可以使用官能化吡咯单体使用有机单体溶液进行制造具有大特异性区域的生物传感器和/或使用可能是药物的阴离子的生物传感器。 (c)2018年elestvier有限公司保留所有权利。

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