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首页> 外文期刊>Bulletin of the Korean Chemical Society >Fabrication of Highly Transparent Electrochromic Mirror Device with Nanoporous Counter Electrode
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Fabrication of Highly Transparent Electrochromic Mirror Device with Nanoporous Counter Electrode

机译:具有纳米孔对电极高透明电致变色镜装置的制造

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摘要

A new inorganic-organic hybrid electrochromic mirror device was fabricated, which is very transparent; its transparency and optical and electrical properties are highly influenced by the structure of the counter electrode (CE). The working electrode (WE) was fabricated via vacuum deposition of Ag, ITO, and WO3 films on glass, in sequence. Ag, ITO, and WO3 served as mirror and low resistance electrode, Ag protective layer, and inorganic reduction electrochromic layer, respectively. This study used a flat CE and nanoporous structured CE that had greatly increased surface to volume ratio. Flat CE did not reduce portion of oxidized phenothiazine (PH). In decoloration state, mirror device still had reddish color; this was a factor that decreased the decoloration reflectance. On the other hand, the use of nanoporous structured CE reduced the entire amount of oxidized PH, completely eliminated the reddish color, and enabled the fabrication of highly reflective mirror devices. Moreover, the use of nanoporous structured CE improved the electrochromic optical and electrical properties, leading to high reflectance variation, low consumed charge, low coloration static current, and fast response time compared to those characteristics of flat CE.
机译:制造了一种新的无机 - 有机混合电致变色镜装置,这是非常透明的;其透明度和光学和电性能受到对电极(CE)的结构的高度影响。依次通过玻璃上的Ag,ITO和WO3薄膜真空沉积制造工作电极(We)。 AG,ITO和WO3分别用作镜子和低电阻电极,Ag保护层和无机还原电致变色层。本研究使用了平坦的Ce和纳米多孔结构CE,其表面大大增加了体积比。平坦的Ce没有减少氧化吩噻嗪(pH)的一部分。在脱色状态下,镜子装置仍然有红颜色;这是一个减少脱色反射的因素。另一方面,使用纳米多孔结构CE的使用减少了整个氧化pH的量,完全消除了红色颜色,并使得能够制造高反射镜装置。此外,与纳米多孔结构CE改善了电致变色光学和电性能,导致高反射率变化,低消耗电荷,低着色静电电流,与平坦CE的那些特性相比的快速响应时间。

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