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Self-Assent bled Nano-Needles of Polyaniline, Efficient Structures in Controlling Electrical Conductivity

机译:自聚式聚苯胺纳米针,控制电导率的高效结构

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摘要

Polyaniline (PANI) is one of the most interesting conducting polymers with a wide and controllable conductivity range, synthesized easily via chemical or electrical route, stable chemically and environmentally, having high absorption in the visible range and high mobility of charge carriers. Under different conditions, PANI morphology can be controlled yielding to the creation of nano-tubes, belts, rods, fibers and particles. In this study, the chemical oxidative polymerization which consists of mixing aniline hydrochloride (A-HCl) with ammonium peroxydisulfate (APS) was used to synthesize HCl doped PANI. Fixing the weight ratio A-HCl/APS defined by the 1UPAC while varying their quantities leads to the formation of PANI nanoparticles with variable diameters. In addition, PANI nano-needles of 60 nm average diameter at the center are also obtained. Different methods are used to investigate of 1-D morphologies. The electrical conductivity of bulk PANI pellets is measured using the four-point probe technique. The absorption in the visible range of PANI particles and nano-needles is determined by UV-Vis spectroscopy. XRD analysis was performed to study the effect of PANI particle size and morphology on the crystallinity of the powder. Such structures could be used in hybrid solar cells for higher conversion efficiencies.
机译:聚苯胺(PANI)是最有趣的导电聚合物之一,具有宽范围和可控制的电导率范围,可通过化学或电气途径轻松合成,化学和环境稳定,在可见光范围内具有高吸收率和电荷载流子高迁移率。在不同条件下,可以控制PANI的形态,以产生纳米管,带,棒,纤维和颗粒。在这项研究中,通过将盐酸苯胺盐酸盐(A-HCl)与过氧二硫酸铵(APS)混合而成的化学氧化聚合反应合成了HCl掺杂的PANI。固定1UPAC定义的A-HCl / APS重量比,同时改变其数量会导致形成直径可变的PANI纳米颗粒。此外,还获得了中心平均直径为60 nm的PANI纳米针。使用不同的方法来研究一维形态。使用四点探针技术测量大块PANI颗粒的电导率。 PANI颗粒和纳米针在可见光范围内的吸收通过紫外-可见光谱法确定。进行XRD分析以研究PANI粒度和形态对粉末结晶度的影响。这样的结构可以用于混合太阳能电池中以获得更高的转换效率。

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  • 会议地点 Boston MA(US);Boston MA(US);Boston MA(US);Boston MA(US)
  • 作者单位

    LPA-GBMI, Department of Physics, Lebanese University - Faculty of Sciences II, PO Box 90656 Jdeidet,Universite Lyon 1, CNRS, UMR 5615, Laboratoire des Multimateriaux et Interfaces, 43 boulevard du II Novembre 1918, F-69622 Villeurbanne, France;

    LPA-GBMI, Department of Physics, Lebanese University - Faculty of Sciences II, PO Box 90656 Jdeidet,;

    Universite Lyon 1, CNRS, UMR 5615, Laboratoire des Multimateriaux et Interfaces, 43 boulevard du II Novembre 1918, F-69622 Villeurbanne, France;

    LPA-GBMI, Department of Physics, Lebanese University - Faculty of Sciences II, PO Box 90656 Jdeidet,;

    LPA-GBMI, Department of Physics, Lebanese University - Faculty of Sciences II, PO Box 90656 Jdeidet,;

    Universite Lyon 1, CNRS, UMR 5615, Laboratoire des Multimateriaux et Interfaces, 43 boulevard du II Novembre 1918, F-69622 Villeurbanne, France;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 工程材料一般性问题;
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