斯托克斯位移
荧光
螺吡喃
材料科学
亚甲蓝
光化学
光致变色
费斯特共振能量转移
激发态
蓝移
亚甲基
生物成像
分子
发光
级联
荧光寿命成像显微镜
汞菁
纳米技术
能量转移
光电子学
光致发光
生物物理学
微秒
绿灯
红移
共振感应耦合
作者
Chenyu Li,He‐Qi Zheng,Weilu Xu,Zhijuan Xu,Zhengluan Liao,Guodong Qian,Yuanjing Cui
标识
DOI:10.1002/adma.202518371
摘要
Photoswitchable dual-color fluorescent materials are highly valuable for applications in cellular imaging and super-resolution microscopy. However, realizing these materials, especially broadening their Stokes shift remains a critical challenge. Herein, a novel strategy for achieving photoswitchable dual-emission fluorescence with a large Stokes shift is proposed via a cascade energy transfer (ET) process in metal-organic frameworks (MOFs). By incorporating the photoisomerizable molecule spiropyran as an ET intermediate, and two fluorescent dyes coumarin 153 (Cou153) and methylene blue (MB) within a MOF, rho-ZMOF, the dual-color dynamic luminescent material rho-ZMOF⊃Cou153&SP&MB is achieved. When excited at 400 nm, rho-ZMOF⊃Cou153&SP&MB exhibits coumarin-centered green emission at 516 nm and methylene blue-centered red fluorescence at 700 nm, with a maximum Stokes shift of 300 nm. More importantly, these dual-color emissions can be reversibly switched on or off upon altering UV- and visible-light irradiation because of the photoswitchable cascade energy transfer from coumarin 153 to methylene blue based on the photochromic transformation of spiropyran. As an example, the potential use of rho-ZMOF⊃Cou153&SP&MB in high-resolution and depth-resolved bioimaging is demonstrated.
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