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静电纺丝合成连续导电 PEDOT:PSS 纳米纤维:用于光电的保形涂层。

Synthesis of Continuous Conductive PEDOT:PSS Nanofibers by Electrospinning: A Conformal Coating for Optoelectronics.

机构信息

UMR CNRS 5615, Laboratoire des Multimatériaux et Interface, Université Claude Bernard LYON1, Université de Lyon , F-69622 Villeurbanne, France.

CEA, LITEN/DTNM/SEN/LSIN, Université de Grenoble Alpes , F-38054 Grenoble, France.

出版信息

ACS Appl Mater Interfaces. 2017 Jan 11;9(1):950-957. doi: 10.1021/acsami.6b13453. Epub 2016 Dec 27.

Abstract

A process to synthesize continuous conducting nanofibers were developed using PEDOT:PSS as a conducting polymer and an electrospinning method. Experimental parameters were carefully explored to achieve reproducible conductive nanofibers synthesis in large quantities. In particular, relative humidity during the electrospinning process was proven to be of critical importance, as well as doping post-treatment involving glycols and alcohols. The synthesized fibers were assembled as a mat on glass substrates, forming a conductive and transparent electrode and their optoelectronic have been fully characterized. This method produces a conformable conductive and transparent coating that is well-adapted to nonplanar surfaces, having very large aspect ratio features. A demonstration of this property was made using surfaces having deep trenches and high steps, where conventional transparent conductive materials fail because of a lack of conformability.

摘要

采用 PEDOT:PSS 作为导电聚合物和静电纺丝方法,开发了一种合成连续导电纳米纤维的工艺。仔细探索了实验参数,以实现大量可重复的导电纳米纤维合成。特别是,静电纺丝过程中的相对湿度被证明是至关重要的,以及涉及二醇和醇的掺杂后处理。合成的纤维组装在玻璃基板上形成一个垫子,形成一个导电和透明的电极,并对其光电性能进行了全面的表征。该方法产生了一种适应性好的导电透明涂层,非常适合非平面表面,具有非常大的纵横比特征。通过在具有深槽和高台阶的表面上进行演示,证明了这种特性,因为常规的透明导电材料由于缺乏适应性而失效。

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