伪装
计算生物学
同源(生物学)
纳米技术
生化工程
计算机科学
化学
生物
工程类
人工智能
材料科学
生物化学
氨基酸
作者
Lin Lu,Bo Wu,Xinyuan He,Lei Zeng,Jianxing Wang,Ryan T. K. Kwok,Jianwei Sun,Zheng Zhao,Jacky W. Y. Lam,Ben Zhong Tang
出处
期刊:Matter
[Elsevier BV]
日期:2025-07-25
卷期号:8 (11): 102332-102332
被引量:4
标识
DOI:10.1016/j.matt.2025.102332
摘要
The threat of counterfeiting demands advanced anti-counterfeiting systems integrating dynamic multistate control with molecular-level security. Limited by static signatures or single-stimulus responsiveness, balancing counterfeit resistance and authorized decodability is difficult. Here, we present stereoisomeric engineering of aggregation-induced emission luminogens, E/Z-TPEMN (tetraphenylethene with methoxy and naphthalimide moieties), which leverages molecular homology with identical frameworks and stimulus-specific divergence responses to achieve multilevel information encryption. Both isomers exhibit identical orange emission in solution, making them initially camouflaged. In aggregates, E-TPEMN shows reversible mechano-/solvatochromism with green/orange shifts, while Z-TPEMN responds minimally, enabling selective signal activation. Both isomers undergo synchronized photoisomerization and self-catalyzed photocleavage, irreversibly transitioning to blue-emitting BPMN. By orchestrating sequential stimuli (solvent, force, and light), the programmable high-contrast fluorescent labels are custom designed. Further, we achieve hierarchical control over information states: initial camouflage via uniform fluorescence, selective decryption through solvent-triggered E-TPEMN activation, photomask-based information writing via photoreaction, temporary concealment through mechanical disruption, and permanent erasure via photocleavage.
科研通智能强力驱动
Strongly Powered by AbleSci AI