电致变色
小提琴手
材料科学
光电子学
显示设备
超短脉冲
发色团
快速切换
电极
电致变色装置
纳米技术
补偿(心理学)
高对比度
电压
光开关
灵活的显示器
转印
调制(音乐)
响应时间
对比度
双稳态
切换时间
离子
电子转移
偶氮苯
全彩
作者
Fangyuan Sun,Yanan He,Miao Li,Haibo Wu,Delai Kong,Chengwei Jiang,Ziyan Yu,Yu Feng,Dake Dong,Guanquan Wang,Fengyu Su,Yanqing Tian,Yanjun Liu
摘要
ABSTRACT All‐solid‐state electrochromic devices (ASSECDs) hold tremendous potential for emerging display technologies. However, achieving sufficiently fast switching for modern display applications remains a significant challenge. Herein, we report an interfacial engineering strategy that synergistically optimizes both electron transfer and ion compensation processes to realize ultrafast‐response ASSECDs. Through surface immobilization of rationally designed dual‐chromophore extended viologen derivative 2BTB‐2POH on TiO 2 ‐modified electrodes combined with a succinonitrile‐based solid‐state electrolyte, the device achieves unprecedented response times of 0.16 s for coloration and 0.40 s for bleaching, representing the fastest switching speeds reported to date for all‐solid‐state electrochromic systems. Furthermore, the device demonstrates a high optical contrast (Δ T = 65.1%), an exceptionally high coloration efficiency (708.9 cm 2 /C), and robust cycling stability (>10,000 cycles with 91.1% retention). By rationally tuning the chromophore structure of viologens ( 2BBAr‐2POH and 2BTD‐2POH ), we extend this strategy to multicolor systems covering a red‐green‐blue (RGB) primary‐color demonstration, and successfully fabricate patterned display prototypes with dynamic display demonstrations. This work establishes a viable pathway toward high‐performance ASSECDs for next‐generation display applications.
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