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Investigation of Thermoelectric Performance of MoS_2-Templated Polyaniline Nanocomposites

机译:MOS_2模板聚苯胺纳米复合材料热电性能研究

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Polyaniline has attracted a lot of attention for thermoelectric (T.E) applications, however their drawback materials is that they possess low power factors than the state-of-the-art materials such as BiTe-based, BiSb-based, PbTe-based, etc. [1-4]. Currently, in order to enhance the T.E properties, hybrids between the polymer and other components such as carbon materials, other polymers, and even inorganic materials are being investigated. In this work, the effect of M0S2 addition on the T.E properties of polyaniline was investigated. The M0S2 nanoflowers were first synthesized via hydrothermal process at 200 °C for 24 hrs after which they were used for templated in situ polymerization of polyaniline. The scanning electron microscope (SEM) image showed that the M0S2 nanoflowers were covered with the polyaniline during the polymerization process and this was confirmed from the X-ray diffraction (XRD) analysis which showed existence of both the polyaniline and MoS_2 in the synthesized material. The electrical conductivity of polyaniline was reported to be 10~(-3) S cm~(-1) and it was noticed that addition of minute amounts of M0S2 into polyaniline resulted in an enhancement of the electrical conductivities of up to two orders of magnitude. Nanocomposite with 5 % M0S2 (PMX-5) showed optimized power factor values ranging from 6.30 × 10~(-2) -1.12 × 10~(-3) μW m~(-1) K~(-2) for the temperature range studied. This study therefore provides a facile approach for synthesis of polyaniline-molybdenum disulphide nanocomposites and the results obtained confirm that transition metal dichalcogenides (TMDs) have a potential for the enhancement of T.E properties of polyaniline.
机译:聚苯胺吸引了热电(TE)应用的大量关注,但是它们的缺点材料是它们具有比最先进的材料更低的电源因素,例如基于BITE的基于BBTE的PBTE的,等等。[1-4]。目前,为了增强T.E的性质,正在研究聚合物和其他组分如碳材料,其他聚合物和甚至无机材料之间的杂种。在这项工作中,研究了M0S2添加对聚苯胺的性质的影响。首先通过200℃的水热法在200℃下合成M0S2纳米轧机24小时,然后将它们用于聚苯胺的原位聚合的模板化。扫描电子显微镜(SEM)图像显示M0S2纳米辊在聚合过程中被聚苯胺覆盖,并且从X射线衍射(XRD)分析中证实了该合成材料中的聚苯胺和MOS_2的存在。据报道,聚苯胺的电导率为10〜(-3)Scm〜(-1),并注意到将微量M0S2加入聚苯胺中,导致电导率提高了最多两个数量级的电导率。具有5%M0S2(PMX-5)的纳米复合材料显示出优化的功率因数值,范围为6.30×10〜(-2)-1.12×10〜(-3)μWM〜(-1)k〜(-2)的温度范围研究。因此,该研究提供了用于合成聚苯胺 - 钼二核复合材料的容易方法,得到的结果证实,过渡金属二甲基化物(TMDS)具有增强聚苯胺的性质的潜力。

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