纳米技术
机制(生物学)
材料科学
可视化
计算机科学
仿生学
双稳态
生化工程
分子机器
视紫红质
仿生材料
设计要素和原则
智能材料
人机交互
工作(物理)
范式转换
作者
Hanqi Gai,Hang Yin,Wei Zhang,Lan Sheng,Sean Xiao-An Zhang
摘要
Artificial stimuli-responsive systems play a pivotal role in driving rapid advances at the frontiers of science and technology. However, existing systems are commonly constrained by "single fixed reaction pathways", making it difficult to replicate the synergistic integration of low-energy activation, multistable states, and excellent cycling reversibility of biological processes. Inspired by the precise regulation of water in biological photoreceptors, this study introduces a "water-assisted excited-state pathway remodeling" (WEPR) mechanism. By designing photoswitchable molecules that functionally mimic rhodopsin chromophores, we employ environmentally benign water as a dynamic regulatory factor to achieve intelligent switching of reaction pathways between high- and low-barrier channels. Materials developed based on this mechanism exhibit exceptional bistability (>7 days), excellent cycling reversibility (>100 cycles), and remarkable long-term stability (>2 years). These properties make it a compelling candidate for technologies such as dynamic information encryption and sustainable displays featuring on-demand visualization and instant erasure. Furthermore, leveraging the multiscale similarities between our molecular switch system and biological visual pigments, the potential role of water in visual perception is discussed. This work not only provides a bioinspired paradigm for developing novel intelligent materials but also offers new insights into the fundamental mechanisms of color perception.
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