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Investigation on size and conductivity of polyaniline nanofiber synthesised by surfactant-free polymerization

机译:由无表面活性剂聚合合成聚苯胺纳米纤维的尺寸和电导率的研究

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An attempt has been made to combine interfacial polymerization with a fast mixing technique without the use of surfactant. Effects of mixing speed, reaction time, temperature, oxidant-to-monomer molar ratio and nitric-to-monomer molar ratio were tested for electrical conductivity and polyaniline nanofiber size. The findings demonstrate that the diameter of polyaniline nanofiber can be reduced by optimising the synthesising parameter, thereby increasing the electrical conductivity of polyaniline nanofiber. Infrared spectroscopy has shown increased amplitude of the main absorption peak of polyaniline nanofiber during the conversion of aniline to conductive polyaniline nanofiber. The crystalline nature of polyaniline nanofiber has been discovered by the X-ray diffraction spectra. Hall effects experiments have shown that the electrical conductivity of polyaniline nanofiber has improved from 5.2 to 17.5 Scm-1 with an increase in homogenizer speed. The morphological properties of polyaniline nanofiber through electron microscopy scanning have confirmed the decreasing size of polyaniline nanofiber from 50-60 nm to 20e30 nm by increasing the homogenizer speed to 30,000 rpm. These findings demonstrate that higher homogenization speed can split the solution to smaller molecules during polymerization contributing to the creation of smaller nanofiber sizes.
机译:已经尝试将界面聚合与快速混合技术相结合,而不使用表面活性剂。测试混合速度,反应时间,温度,氧化剂 - 单体摩尔比和硝基对单体摩尔比的影响,用于电导率和聚苯胺纳米纤维尺寸。研究结果表明,通过优化合成参数可以减少聚苯胺纳米纤维的直径,从而增加了聚苯胺纳米纤维的电导率。红外光谱显示在苯胺转化到导电聚苯胺纳米纤维期间聚苯胺纳米纤维的主要吸收峰的幅度增加。通过X射线衍射光谱发现聚苯胺纳米纤维的结晶性质。霍尔效应实验表明,聚苯胺纳米纤维的电导率从5.2-17.5 scm-1改善,随着均化器速度的增加。通过电子显微镜扫描的聚苯胺纳米纤维的形态学性能通过将均化器速度增加至30,000rpm,证实了从50-60nm至20e20nm的聚苯胺纳米纤维的尺寸降低。这些发现表明,在聚合过程中,较高的均质化速度可以将溶液分解为较小的分子,这有助于产生较小的纳米纤维尺寸。

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