环境对PEDOT:PSS聚合物形貌、光学和电学特性的影响

IF 0.4 Q4 PHYSICS, MULTIDISCIPLINARY
X. Rozhkova, А.К. Aimukhanov, А.К. Zeinidenov, А.М. Alexeev
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引用次数: 1

摘要

本文介绍了环境对PEDOT:PSS薄膜表面结构、光学和电学特性影响的研究结果。在三种不同类型的气氛中,在相同的薄膜热退火条件下进行了研究。已经证实,在真空、氮气气氛和空气气氛中用乙醇和异丙醇对聚合物膜的表面进行改性会导致聚合物的表面形态和光电传输特性的变化。根据环境,当用一定浓度的乙基和异丙醇对PEDOT:PSS膜进行改性时,吸收光谱显示出对PEDOT负责的吸收最大值向光谱的短波长区域移动,以及对芳香片段PSS的吸收负责的光谱部分的吸收峰降低。研究表明,PEDOT:PSS表面形态的结构特征影响薄膜的电输运参数:Rh是PEDOT:PPSS聚合物薄膜的电阻,Rext是PEDOT/PSS/电极界面处的电荷载流子转移电阻,keff是有效电荷载流子提取速率,τeff是电荷载流子的有效渡越时间。确定了薄膜生产的最佳工艺参数,在该工艺参数下,PEDOT:PSS聚合物薄膜的电输运性能得到了提高。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Influence of the environment on the morphology, optical and electrical characteristics of the PEDOT:PSS polymer
The paper presents the results of studying the influence of the environment on the surface structure, optical and electrical characteristics of the PEDOT:PSS film. The studies have been carried out in three different types of atmosphere under the same conditions of thermal annealing of the films. It has been established that the modification of the surface of a polymer film with ethanol and isopropanol in vacuum, in a nitrogen atmosphere, and in the air atmosphere leads to a change in the surface morphology and the optical electric transport properties of the polymer. Depending on the environment, when the PEDOT:PSS film is modified with a certain concentration of ethyl and isopropyl alcohols, the absorption spectra show a shift in the absorption maximum responsible for PEDOT to the short-wavelength region of the spectrum, as well as a decrease in the absorption peak of the part of the spectrum responsible for the absorption of the aromatic fragment PSS. It is identified that the structural features of the PEDOT:PSS surface morphology affect the electrical transport parameters of the films: Rh is the resistance of the PEDOT:PSS polymer film, Rext is the charge carrier transfer resistance at the PEDOT:PSS/electrode interface, keff is the effective charge carrier extraction rate and τeff is the effective transit time of charge carriers. The optimal technological parameters for film production have been determined, at which the electrical transport properties of PEDOT:PSS polymer films are increased.
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