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Facile Fabrication of PEDOT:PSS/Polythiophenes Bilayered Nanofilms on Pure Organic Electrodes and Their Thermoelectric Performance

机译:PEDOT:PSS /聚噻吩双层纳米膜在纯有机电极上的简便制备及其热电性能

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摘要

A pure organic PEDOT:PSS nanofilm was used as a working electrode for the first time to electrodeposit polymer films of polythiophene (PTh) and its derivatives in a boron trifluoride diethyl ether (BFEE) solution, fabricating a novel generation of bilayered nanofilms. Cyclic voltammetry (CV) demonstrated good electrochemical stability of the as-formed films. Structures and surface morphologies were systematically investigated by the characterizations of cross-section SEM, FT-IR, UV-vis, SEM, and AFM. The resulting films revealed stable and enhanced thermoelectric (TE) performances. The electrical conductivity values of PEDOT:PSS/PTh, PEDOT:PSS/P3MeT, and PEDOT:PSS/P3HT nanofilms were determined to be 123.9, 136.5, and 200.5 S cm~(-1), respectively. The power factor reached up to be a maximum value of 5.79 μW m~(-1) k~(-2). Thus, this technique offers a facile approach to a class of bilayered nanofilms, and it may provide a general strategy for fabricating a new generation of conducting polymers for more practical applications.
机译:纯有机PEDOT:PSS纳米膜首次用作工作电极,将聚噻吩(PTh)及其衍生物的聚合物膜电沉积在三氟化硼二乙醚(BFEE)溶液中,制造出新一代的双层纳米膜。循环伏安法(CV)证明了所形成薄膜的良好电化学稳定性。通过截面SEM,FT-IR,UV-vis,SEM和AFM的表征系统地研究了结构和表面形态。所得膜显示稳定和增强的热电(TE)性能。 PEDOT:PSS / PTh,PEDOT:PSS / P3MeT和PEDOT:PSS / P3HT纳米膜的电导率值分别确定为123.9、136.5和200.5 S cm〜(-1)。功率因数达到最大值5.79μWm〜(-1)k〜(-2)。因此,该技术为一类双层纳米膜提供了一种简便的方法,并且可以为制造用于更实际应用的新一代导电聚合物提供一般策略。

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