电致变色
透射率
材料科学
光电子学
洋红
电致变色装置
透明度(行为)
光学透明度
快速切换
纳米技术
显示设备
普鲁士蓝
数码产品
固态
光开关
罗丹明B
罗丹明
灵活的显示器
作者
Xuesong Liu,Baige Yang,Yinghong Qu,Ruian Liu,Yan Yan,Weiran Zhang,Sean Xiao‐An Zhang,Yu‐Mo Zhang
标识
DOI:10.1038/s41467-025-67462-5
摘要
Electrochromic (EC) displays attract growing interest as promising candidates for next-generation transparent displays due to their intrinsic high transmittance and excellent eye-friendly properties. However, achieving simultaneous high transparency and vivid multicolor switching remains challenging. Here, we present a single-molecule design strategy that integrates a rhodamine moiety with a ProDOT (3,4-propylenedioxythiophene) unit. Following systematic screening of molecular dopants, these systems demonstrate well-matched electrochemical potential windows and compatible redox behaviors, thereby effectively eliminating color interference. The as-prepared PTRh-B devices achieve high optical transmittance with three distinct optical states-colorless, magenta, and blue-and multiple stable states (colorless and blue states >5 h; magenta state >30 days). The devices also show excellent cycling stability of over 5,200 cycles for the colorless-to-magenta and 8,400 cycles for magenta-to-blue transitions, coupled with fast switching times of 0.13 s and 1.8 s, respectively. Moreover, functional pixel-level display is successfully realized, underscoring the significant potential for developing advanced transparent and energy-efficient display and electronic erasable memory systems.
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