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Polycarbonate-based conductive film prepared by coating DBSA-doped PEDOT/sorbitol

机译:通过涂覆DBSA掺杂的PEDOT /山梨糖醇制备的聚碳酸酯基导电膜

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A series of conductive polycarbonate films (CPCFs) were prepared by spin coating with an ethanol-based coating solution comprised of dodecylbenzenesulfonic acid-doped poly(3,4-ethylenedioxythiophene) (PEDOT)/sorbitol. The variation of CPCF surface resistivity was then measured as a function of temperature. CPCF surface resistivity decreased as sorbitol content increased, with the minimum values in the temperature range 175-185 deg C. Furthermore, the CPCF-1.6 exhibited significantly improved thermal stability with respect to surface resistivity even at 175 deg C. FT-IR analysis indicated that, after thermal treatment, hydrogen bonds arising from the hydroxy groups of sorbitol or hydroxypropyl cellulose and carbonyl groups of polycarbonate were established. The combination of surface resistivity data and FT-IR analysis suggests that the introduction of sorbitol accompanied with thermal treatment allows the PEDOT chains to undergo favorable inter-chain interactions leading to charge transfer and physical cross-linkage via hydrogen bonding.
机译:通过用包含十二烷基苯磺酸掺杂的聚(3,4-乙撑二氧噻吩)(PEDOT)/山梨糖醇的乙醇基涂料溶液旋涂制备一系列导电聚碳酸酯薄膜(CPCF)。然后测量CPCF表面电阻率随温度的变化。 CPCF表面电阻率随山梨糖醇含量的增加而降低,其最小值在175-185℃的温度范围内。此外,即使在175℃,CPCF-1.6相对于表面电阻率也显示出显着改善的热稳定性。FT-IR分析表明热处理后,建立了由山梨糖醇或羟丙基纤维素的羟基与聚碳酸酯的羰基形成的氢键。表面电阻率数据和FT-IR分析的结合表明,引入山梨醇并进行热处理可使PEDOT链发生有利的链间相互作用,从而通过氢键作用导致电荷转移和物理交联。

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