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Rapid two-step metallization through physicochemical conversion of Ag2O for printed 'black' transparent conductive films

机译:快速通过两步金属化物理化学转换Ag2O印刷“黑色”透明导电薄膜

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摘要

A rapid two-step metallization for fabrication of a "black" transparent conductive film on a flexible substrate for display applications is presented, using a mixture of silver oxide (Ag2O) and silver neodecanoate (C_(10)H_(19)AgO2), and its electrical conductivity and colour transition behaviours are investigated. Silver nanoparticles, which are physicochemically converted from silver oxide microparticles in the presence of silver neodecanoate in the course of the first metallization step at 150 °C for 10 mi'n, are chemically annealed by immersing them in an acidic ferric chloride (FeCI3) solution at room temperature for 10 s. During this second metallization step, silver nanoparticles are found to be tightly packed through Ostwald ripening, which eventually leads to the dramatic enhancement of electrical conductivity by six orders of magnitude from 1.33 S m~(-1) to 1.0 × 10~7 S m~(-1), which corresponds to 15.9% of the electrical conductivity of bulk silver. In addition to the enhancement of electrical conductivity, the silver chloride (AgCI) layer formed on the surface of the silver layer due to ferric ions (Fe~(3+)) enhances the blackness of the transparent conductive film by a factor of 1.69, from 36.29 B to 61.51 B. The sheet resistance and optical transparency of a roll-to-roll printed black transparent conductive film for a touch screen panel are found to be as low as 0.9 Ω □~(-1) and 81%, respectively, after conducting the proposed two-step metallization.
机译:快速制造的两步金属化“黑色”上的透明导电薄膜柔性衬底上显示的应用程序,使用的混合物氧化银(Ag2O)和银neodecanoate (C_ (10) H_ (19) AgO2),和它的导电性和色彩过渡行为调查。纳米粒子的物理化学氧化银微粒的转换银过程中neodecanoate的存在金属化的第一步,为10 150°Cmi稀烂化学退火的浸泡在酸性氯化铁(FeCI3)解决方案室温10年代。金属化步骤中,银纳米粒子发现通过奥斯特瓦尔德被紧密成熟,最终导致了戏剧性的增强导电性的6数量级从1.33 S×1.0 m ~ (1)10 ~ 7 S m ~(1),对应于15.9%大部分银的导电性。除了增强电气电导率,氯化银(AgCI)层形成表面的银层由于铁离子(Fe ~(3 +))增强的黑暗透明导电薄膜的一个因素1.69,从36.29 B 61.51 B表阻力和光学透明的精密卷绕对位印刷黑色透明导电电影被发现为触摸屏面板低见0.9Ω□~(1)和81%,分别提出了两步金属化导电。

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