超分子化学
瞬态(计算机编程)
发光
红外线的
超分子手性
材料科学
化学
光学
物理
光电子学
结晶学
计算机科学
晶体结构
操作系统
作者
Qian Wang,Hanren Xu,Zhen Qi,Ju Mei,He Tian,Da‐Hui Qu
标识
DOI:10.1002/anie.202407385
摘要
Abstract Circularly polarized luminescence (CPL) is promising for applications in many fields. However, most systems involving CPL are within the visible range; near‐infrared (NIR) CPL‐active materials, especially those that exhibit high g lum values and can be controlled spatially and temporally, are rare. Herein, dynamic NIR‐CPL with a g lum value of 2.5×10 −2 was achieved through supramolecular coassembly and energy‐transfer strategies. The chiral assemblies formed by the coassembly between adenosine triphosphate (ATP) and a pyrene derivative exhibited a red CPL signal ( g lum of 10 −3 ). The further introduction of sulfo‐cyanine5 resulted in a energy‐transfer process, which not only led to the NIR CPL but also increased the g lum value to 10 −2 . Temporal control of these chiral assemblies was realized by introducing alkaline phosphatase to fabricate a biomimetic enzyme‐catalyzed network, allowing the dynamic NIR CPL signal to be turned on. Based on these enzyme‐regulated temporally controllable dynamic CPL‐active chiral assemblies, a multilevel information encryption system was further developed. This study provides a pioneering example for the construction of dynamic NIR CPL materials with the ability to perform temporal control via the supramolecular assembly strategy, which is expected to aid in the design of supramolecular complex systems that more closely resemble natural biological systems.
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