紧身衣
化学
次氯酸
二茂铁
分子内力
荧光
光化学
荧光团
体内
生物传感器
生物物理学
组合化学
生物化学
立体化学
生物
物理
生物技术
电极
物理化学
量子力学
电化学
作者
Dongrui Yin,Chenzhi Yao,Ying Chen,Zuyang He,Peng Yu,Xing‐Wen Sun,Shangfeng Wang,Fan Zhang
标识
DOI:10.1002/adhm.202201139
摘要
Abstract Optically monitoring hypochlorous acid (HClO) in living body favors diagnosis and study of inflammatory diseases. However, this has been hampered by limited strategies to develop highly fluorogenic tools in the deep‐penetration near‐infrared spectrum. Herein, a near‐infrared aza‐BODIPY‐bisferrocene triad Fc 2 ‐CBDP that unexpectedly achieves an exceptionally sensitive and selective fluorescence turn‐on (>220‐fold) response toward HClO through single‐ferrocene oxidation and boron‐alkynyl hydrolysis cascade is reported. Mechanism insight shows that Fc 2 ‐CBDP features “enhanced charge transfer”‐caused quenching due to intramolecular bisferrocene electronic coupling, which is decoupled in the reaction with HClO. The utility of Fc 2 ‐CBDP for intracellular HClO imaging is evaluated and, more importantly, in vivo high‐contrast deep‐tissue imaging of lymphatic inflammation and colitis is realized. This work provides new insights into both HClO and ferrocene chemistry, and extends the reach of fluorogenic strategies in the near‐infrared biosensing.
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