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首页> 外文期刊>Applied Surface Science >Morphology, conductivity, and wetting characteristics of PEDOT:PSS thin films deposited by spin and spray coating
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Morphology, conductivity, and wetting characteristics of PEDOT:PSS thin films deposited by spin and spray coating

机译:旋涂和喷涂形成的PEDOT:PSS薄膜的形貌,电导率和润湿特性

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摘要

The goal of this paper is to study the characteristics of PEDOT:PSS thin films and the effects of varying the processing parameters on the structure, functionality, and surface wetting of spun-on and spray-on PEDOT:PSS thin films. PEDOT:PSS is a polymer mixture, which is electrically conductive and transparent and, therefore, is an attractive material for some optoelectronic applications, such as organic and perovskite solar cells. In this work, the films are fabricated using spin coating (a lab-scale method) and spray coating (an up-scalable method). The effects of spinning speed, drying time, and post-annealing temperature on spun-on samples and the effects of the substrate temperature and number of spray passes (deposition layers) on spray-on samples, as well as the effect of precursor solution concentration on both cases are investigated. Various characterization tools, such as AFM, SEM, XRD, confocal laser scanning microscopy (CLSM), and electrical conductivity measurements are used to determine the film roughness, thickness, structure, and morphology. The solution precursor physical data, such as contact angle on glass substrates, viscosity, and interfacial tension, are also obtained within a practical range of temperatures and concentrations. It is found that in both spin and spray coating routes, only well-controlled operating conditions result in the formation of conductive and defect-free PEDOT:PSS films. The formation of PEDOT:PSS thin films with small grains composed of PEDOT forming the core of the grains and PSS forming a shell or coating, which are evenly distributed in a PSS-rich matrix, is favored. Conditions leading to the above-mentioned electrically conductive scenario are identified. Other topics, such as the formation of defects and dewetting, are also elucidated. (C) 2015 Elsevier B.V. All rights reserved.
机译:本文的目的是研究PEDOT:PSS薄膜的特性以及改变工艺参数对旋转和喷涂PEDOT:PSS薄膜的结构,功能和表面润湿的影响。 PEDOT:PSS是一种聚合物混合物,具有导电性和透明性,因此对于某些光电应用(例如有机和钙钛矿太阳能电池)是有吸引力的材料。在这项工作中,使用旋涂(实验室规模的方法)和喷涂(可放大的方法)制造薄膜。纺丝速度,干燥时间和后退火温度对纺丝样品的影响以及基质温度和喷涂道次(沉积层)对喷涂样品的影响,以及前体溶液浓度的影响对这两种情况进行了调查。各种表征工具,例如AFM,SEM,XRD,共焦激光扫描显微镜(CLSM)和电导率测量,可用于确定膜的粗糙度,厚度,结构和形态。还可以在温度和浓度的实际范围内获得溶液前体的物理数据,例如在玻璃基板上的接触角,粘度和界面张力。发现在旋涂和喷涂两种方法中,只有良好控制的操作条件才会导致形成导电且无缺陷的PEDOT:PSS膜。有利的是形成具有小晶粒的PEDOT:PSS薄膜,该薄膜由均匀分布在富含PSS的基质中,该薄膜由形成颗粒核心的PEDOT和形成壳或涂层的PSS组成。确定导致上述导电情况的条件。还阐明了其他主题,例如缺陷的形成和去湿。 (C)2015 Elsevier B.V.保留所有权利。

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