Sato Kan, Mizukami Ryusuke, Mizuma Takahiro, Nishide Hiroyuki, Oyaizu Kenichi
Department of Applied Chemistry, Waseda University, Tokyo 169-8555, Japan.
Polymers (Basel). 2017 Mar 3;9(3):86. doi: 10.3390/polym9030086.
Electrochromic (EC) polymers such as polyviologens have been attracting considerable attention as wet-processable electrodes for EC displays, thanks to their brilliant color change accompanied with reversible redox reactions. To establish wider usage, achieving multicolor and high-resolution characteristics is indispensable. In this paper, we demonstrated that the introduction of substituents such as methyl groups into bipyridine units changed the stereostructure of the cation radicals, and thus shifted the color (e.g., ordinary purple to blue). Also, by relaxing excessive π-stacking between the viologen moieties, the response rate was improved by a factor of more than 10. The controlled charge transport throughout the polyviologen layer gave rise to the fabrication of EC displays which are potentially suitable for the thin film transistor (TFT) substrate as the counter electrodes with submillimeter pixels. The findings can be versatilely used for the new design of polyviologens with enhanced electrochemical properties and high-resolution, multicolor EC displays.
诸如聚紫精之类的电致变色(EC)聚合物,因其伴随着可逆氧化还原反应的鲜明颜色变化,作为用于EC显示器的可湿法加工电极而备受关注。为了实现更广泛的应用,实现多色和高分辨率特性是必不可少的。在本文中,我们证明了在联吡啶单元中引入诸如甲基之类的取代基会改变阳离子自由基的立体结构,从而使颜色发生变化(例如,从普通的紫色变为蓝色)。此外,通过减轻紫精部分之间过度的π堆积,响应速率提高了10倍以上。在整个聚紫精层中进行可控的电荷传输,使得有可能制造出适合作为具有亚毫米像素的对电极的薄膜晶体管(TFT)基板的EC显示器。这些发现可广泛用于具有增强电化学性能的聚紫精新设计以及高分辨率、多色EC显示器。