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Solution-Processed PEDOT:PSS Films with Conductivities as Indium Tin Oxide through a Treatment with Mild and Weak Organic Acids

机译:溶液处理的PEDOT:PSS膜,通过用弱和弱有机酸处理,具有氧化铟锡的导电性

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摘要

New transparent conductive materials are urgently needed for optoelectronic devices. Poly(3,4-ethylenedioxythiophene):poly(styrenesulfonate) (PEDOT:PSS) will be a promising next-generation transparent electrode material if its conductivity is comparable to that of indium tin oxide (ITO). To enhance significantly the conductivity of PEDOT:PSS with mild compounds has practical significance. In this work, significant conductivity enhancements are achieved on PEDOT:PSS films after treatment with mild and weak organic acids. The treated PEDOT:PSS films exibit metallic behavior at room temperature. Their conductivity increases to about 3300 S cm~(-1) after they are treated with 8 M methanesulfonic acid. The conductivity enhancement depends on the acidity and physical properties of the organic acids. The mechanism for the conductivity enhancement is ascribed to proton transfer from the mild or weak organic acids to PSS~- of PEDOTiPSS. There are two factors for the proton transfer from mild or weak organic acids to PSS. One factor is the high acid concentration during the treatment, particularly after the vaporization of the water solvent. Another factor is the phase segregation of PSSH from PEDOT:PSS, because PSSH is hydrophilic, whereas PEDOT is hydrophobic. This method is better than that using very strong and corrosive acids like sulfuric acid. These highly conductive and highly transparent PEDOT:PSS films are promising for use as next-generation transparent electrodes.
机译:光电器件迫切需要新的透明导电材料。如果聚(3,4-乙撑二氧噻吩):聚(苯乙烯磺酸盐)(PEDOT:PSS)的电导率可与氧化铟锡(ITO)相媲美,则将是有希望的下一代透明电极材料。用温和的化合物显着提高PEDOT:PSS的电导率具有实际意义。在这项工作中,用弱和弱有机酸处理后,PEDOT:PSS薄膜的电导率显着提高。经处理的PEDOT:PSS膜在室温下表现出金属行为。用8 M甲磺酸处理后,它们的电导率增加到约3300 S cm〜(-1)。电导率的提高取决于有机酸的酸度和物理性质。电导率增强的机制归因于质子从轻度或弱有机酸转移到PEDOTiPSS的PSS-。质子从弱或弱有机酸转移到PSS有两个因素。一个因素是在处理期间,尤其是在水溶剂蒸发之后的高酸浓度。另一个因素是PSSH与PEDOT:PSS的相分离,因为PSSH是亲水的,而PEDOT是疏水的。这种方法比使用非常强的腐蚀性酸(例如硫酸)更好。这些高导电性和高度透明的PEDOT:PSS膜有望用作下一代透明电极。

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