光异构化
荧光
光电开关
螺吡喃
分子开关
光化学
荧光团
光致变色
化学
光激发
材料科学
光电子学
异构化
分子
激发
光学
有机化学
催化作用
物理
生物化学
电气工程
工程类
作者
Runqing Yang,Xue Ren,Li‐Jun Mei,Guocui Pan,Xiaoze Li,Zhiyuan Wu,Song Zhang,Wei Wang,Weili Yu,Hong‐Hua Fang,Chong Li,Ming‐Qiang Zhu,Zheng Hu,Tianmeng Sun,Bin Xu,Wenjing Tian
标识
DOI:10.1002/anie.202117158
摘要
In photoswitches that undergo fluorescence switching upon ultraviolet irradiation, photoluminescence and photoisomerization often occur simultaneously, leading to unstable fluorescence properties. Here, we successfully demonstrated reversible solid-state triple fluorescence switching through "Pump-Trigger" multiphoton manipulation. A novel fluorescence photoswitch, BOSA-SP, achieved green, yellow, and red fluorescence under excitation by pump light and isomerization induced by trigger light. The energy ranges of photoexcitation and photoisomerization did not overlap, enabling appropriate selection of the multiphoton light for "pump" and "trigger" photoswitching, respectively. Additionally, the large free volume of the spiropyran (SP) moiety in the solid state promoted reversible photoisomerization. Switching between "pump" and "trigger" light is useful for three-color tunable switching cell imaging, which can be exploited in programmable fluorescence switching. Furthermore, we exploited reversible dual-fluorescence switching in a single molecular system to successfully achieve two-color super-resolution imaging.
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