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Ultrathin Polymer Films for Transparent Electrode Applications Prepared by Controlled Nucleation

机译:可控成核法制备的透明电极用超薄聚合物薄膜

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摘要

The vacuum vapor phase polymerization (VPP) technique is capable of producing conducting polymer films with conductivities up to 3400 S cm~(-1). However, the method is not able to produce robust nano-thin films as required for transparent conducting electrode (TCE) applications. We show that with the addition of aprotic solvents or chelating agents to the oxidant mixture, it is possible to control the polymerization rate, and nucleation, in the VPP process. This provides the opportunity of altering the grain size and depositing conducting polymer films with a thickness of 16 to 200 nm with resulting optical transmission within the range 50-98% that are robust enough to endure the post polymerization processing steps. The figure of merit (FoM), which is used to quantify a film's suitability for TCE applications, results in values from 12 to 25. This result indicates that the nano- films outperform most of the previously reported graphene films and approaches the accepted industry standard for TCE applications.
机译:真空气相聚合(VPP)技术能够生产导电率高达3400 S cm〜(-1)的导电聚合物膜。但是,该方法不能产生透明导电电极(TCE)应用所需的坚固的纳米薄膜。我们表明,通过向氧化剂混合物中添加非质子溶剂或螯合剂,可以在VPP工艺中控制聚合速率和成核作用。这提供了改变晶粒尺寸和沉积导电聚合物膜的机会,该导电聚合物膜的厚度为16至200nm,所得到的光学透射率在50-98%的范围内,其足够坚固以承受后聚合处理步骤。品质因数(FoM)用于量化薄膜对TCE应用的适用性,得出的值在12到25之间。该结果表明,纳米薄膜的性能优于大多数先前报道的石墨烯薄膜,并达到公认的行业标准用于TCE应用程序。

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