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A novel n-type poly(sulfonic acid diphenyl aniline) and its nanocomposites with large Seebeck coefficient enhanced with external magnetic fields

机译:一种新型n型聚磺酸二苯苯胺及其大塞贝克系数的纳米复合材料在外磁场作用下增强

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摘要

Most of the polymeric thermoelectric materials represent p-type conductivity; however, those of n-type are very few. We report some novel n-type polymeric materials, which are poly(sulphonic acid diphenyl aniline) (PSDA) and its nanocomposites with polythiophene (PTh). They were synthesized in aqueous media using chemical oxidation polymerization process under the external magnetic field where the flux intensities are 0, 1.5, 2.5, and 4.6 kGauss. As the magnetic flux density increases, absolute values of Seebeck coefficient of PSDA and PSDA/PTh nanocomposite films increased however their conductivity did not changed. The negative sign of Seebeck coefficients indicated that PSDA and PSDA/PTh nanocomposites have n-type conductivity. The highest Seebeck coefficient and power factor were obtained as -2535 mu V/K and 0.031 mu W/mK(2), respectively, for PSDA synthesized under 4.6 kGauss magnetic flux. Changes of the Seebeck coefficient were examined in detail with XPS analysis. FTIR, UV-vis spectroscopy, DLS, and XRD analyzes were also performed for the characterization of the polymers. Their surface morphologies were examined by STEM.
机译:大多数聚合物热电材料代表p型电导率;然而,N型的很少。我们报道了一些新型的n型聚合物材料,即聚磺酸二苯苯胺(PSDA)及其与聚噻吩(PTh)的纳米复合材料。它们是在外磁场下使用化学氧化聚合工艺在水介质中合成的,磁通强度分别为0、1.5、2.5和4.6 kGauss。随着磁通密度的增加,PSDA和PSDA/PTh纳米复合薄膜的塞贝克系数绝对值增加,但其电导率没有变化。塞贝克系数的负号表明PSDA和PSDA/PTh纳米复合材料具有n型电导率。在4.6 kGauss磁通量下合成的PSDA的塞贝克系数和功率因数分别为-2535 μ V/K和0.031 μ W/mK(2)。通过XPS分析详细研究了塞贝克系数的变化。还进行了FTIR、紫外-可见光谱、DLS和XRD分析,以表征聚合物。通过STEM检查它们的表面形态。

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