A semi-solid hydrogel state electrochromic device based on an asymmetric disubstituted viologen containing a quaternary ammonium group with enhanced electrochromic stability

IF 2.5 3区 化学 Q2 CHEMISTRY, MULTIDISCIPLINARY
Lin Yin, Chen-xin Yang, Yu-xuan Han, Hao Zhang, Feng-lu Jiang, Wen-tao Zhong, Cheng-bin Gong and Qian Tang
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Abstract

This work aims to investigate the electrochromic behavior of an asymmetric disubstituted viologen containing a quaternary ammonium group in semi-solid hydrogel state electrochromic devices. The asymmetric disubstituted viologen BTMAPP3+3Br was synthesized as the electrochromic material, and two symmetric disubstituted viologens (DTMAPP4+4Br and DBP2+2Br) were synthesized as the control electrochromic materials. Polyacrylamide hydrogel state ECDs based on three electrochromic materials were assembled via in situ photoinitiated polymerization of acrylamide under UV light, and their electrochemical and electrochromic performances were investigated. They showed similar electrochemical performance. They also required the same working voltage and achieved a similar color change from a colorless bleached state to a blue-purple colored state. It is noteworthy that the ECD based on BTMAPP3+3Br showed better cycling stability (retaining of the initial optical contrast after 16 000 s monitored: 95.6% versus 70.7% and 78.5%) and a higher coloration efficiency (115 cm2 C−1versus 96 cm2 C−1 and 103 cm2 C−1) compared to the PAM ECDs based on two symmetric disubstituted viologens. The results indicate that an asymmetric disubstituted viologen containing a quaternary ammonium group can enhance the cycling stability of the gel-state ECD through suppressing the formation of radical cation dimers. The all-in-one semi-solid hydrogel state ECDs based on BTMAPP3+3Br with advantages of easy-to-make process, good cycling stability, low operating voltage, high coloration efficiency and low power consumption offer a new choice for electronic labels, solar cell powered displays, smart windows, etc.

Abstract Image

一种半固体水凝胶态电致变色装置,其基为含季铵基的不对称双取代紫外光,具有增强的电致变色稳定性
本文研究了含季铵盐基的不对称双取代紫外光在半固体水凝胶状态电致变色器件中的电致变色行为。合成了不对称双取代紫外光原BTMAPP3+3Br−作为电致变色材料,并合成了两个对称双取代紫外光原DTMAPP4+4Br−和DBP2+2Br−作为对照电致变色材料。采用紫外光引发聚合法制备了基于三种电致变色材料的聚丙烯酰胺水凝胶态ECDs,并对其电化学性能和电致变色性能进行了研究。它们表现出相似的电化学性能。它们也需要相同的工作电压,并实现了从无色漂白状态到蓝紫色状态的类似颜色变化。值得注意的是,基于BTMAPP3+3Br−的ECD与基于两种对称双取代viologens的PAM ECD相比,具有更好的循环稳定性(在监测16000 s后保持初始光学对比度:95.6%,70.7%和78.5%)和更高的显色效率(115 cm2 C−1,96 cm2 C−1和103 cm2 C−1)。结果表明,含季铵基的不对称双取代紫丁香素可以通过抑制自由基阳离子二聚体的形成来提高凝胶态ECD的循环稳定性。基于BTMAPP3+3Br -的一体化半固体水凝胶状态ECDs具有制作工艺简单、循环稳定性好、工作电压低、显色效率高、功耗低等优点,为电子标签、太阳能电池供电显示器、智能窗口等领域提供了新的选择。
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来源期刊
New Journal of Chemistry
New Journal of Chemistry 化学-化学综合
CiteScore
5.30
自引率
6.10%
发文量
1832
审稿时长
2 months
期刊介绍: A journal for new directions in chemistry
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