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Formation of a conductive overcoating layer based on hybrid composites to improve the stability of flexible transparent conductive films

机译:基于杂化复合材料的导电外涂层的形成,以改善柔性透明导电膜的稳定性

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A protective layer that can be applied on a flat flexible transparent conductive film was prepared by combining silica sol and organic polymer. (3-Glycidyloxypropyl)trimethoxysilane (GPTMS) was used as a precursor for the silica sol, which hydrolyzed under moisture to form silanol groups and self-condensed to form a sol under acidic conditions. Therefore, the organic polymer used was poly(4-styrenesulfonic acid) (PSSA), which is acidic and water-soluble; thus, the silica precursor can form a sol and can cause chemical condensation with the silica sol under thermal conditions. However, as this protective layer was insulating, there was difficulty in conducting electricity to the lower portion through the upper contact. Therefore, a small amount of conductive polymer, poly(3,4-ethylenedioxythiophene):poly(styrenesulfonate) (PEDOT:PSS), was added to the protective layer to make the overcoating layer itself conductive, thereby enabling electrical conduction to the underlying conductive film. The network structure of the overcoating layer surface could block oxygen and moisture, thus improving chemical stability. Therefore, under high-temperature and high-humidity conditions for 500 h, the sheet resistance increased by 145% before overcoating but increased by 33% after the overcoating layer was formed with appropriate thickness. In addition, the bonding strength of the surface was further improved. Peel-off occurred after applying a pencil having hardness of 5B or more before the overcoating treatment; however, after the overcoating treatment, no damage was caused by a pencil having hardness of 5H or less. Consequently, the overcoated conductive film maintained flexibility and transparency; it also exhibited desirable electrical characteristics, improved chemical stability, and excellent scratch resistance.
机译:通过将硅溶胶和有机聚合物结合,制备了可以施加在平坦的柔性透明导电膜上的保护层。 (3-缩水甘油基氧丙基)三甲氧基硅烷(GPTMS)用作二氧化硅溶胶的前体,该二氧化硅溶胶在湿气下水解形成硅烷醇基团,并在酸性条件下自缩合形成溶胶。因此,所用的有机聚合物是聚(4-苯乙烯磺酸)(PSSA),它是酸性和水溶性的。因此,二氧化硅前体可以形成溶胶,并且可以在热条件下与二氧化硅溶胶发生化学缩合。但是,由于该保护层是绝缘的,因此难以通过上部触点将电流传导到下部。因此,向保护层中添加了少量的导电聚合物,即聚(3,4-乙撑二氧噻吩):聚(苯乙烯磺酸盐)(PEDOT:PSS),以使外涂层本身具有导电性,从而能够导电至下面的导电层电影。外涂层表面的网络结构可以阻止氧气和水分,从而提高化学稳定性。因此,在高温高湿条件下500小时,在涂覆之前,薄层电阻增加了145%,而在以适当的厚度形成覆盖层之后,薄层电阻增加了33%。另外,表面的结合强度进一步提高。在进行面涂处理之前,使用硬度大于等于5B的铅笔后会发生剥离。但是,在罩面处理后,硬度为5H以下的铅笔没有损坏。因此,外涂层导电膜保持柔韧性和透明性。它还表现出令人满意的电特性,改善的化学稳定性和出色的耐刮擦性。

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