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Highly Twisted Conformation Thiopyrylium Photosensitizers for In Vivo Near Infrared‐II Imaging and Rapid Inactivation of Coronavirus

Yishen Liu, Meijia Gu, Qihang Ding, Zhiyun Zhang, Wanxia Gong, Yuncong Yuan, Xiaofei Miao, Huili Ma, Xuechuan Hong, Wenbo Hu, Yuling Xiao

2022Angewandte Chemie10 citationsDOI

Abstract

Abstract Despite significant effort, a majority of heavy‐atom‐free photosensitizers have short excitation wavelengths, thereby hampering their biomedical applications. Here, we present a facile approach for developing efficient near‐infrared (NIR) heavy‐atom‐free photosensitizers. Based on a series of thiopyrylium‐based NIR‐II (1000–1700 nm) dyads, we found that the star dyad HD with a sterically bulky and electron‐rich moiety exhibited configuration torsion and significantly enhanced intersystem crossing (ISC) compared to the parent dyad. The electron excitation characteristics of HD changed from local excitation (LE) to charge transfer (CT)‐domain, contributing to a ≈6‐fold reduction in energy gap (Δ E ST ), a ≈10‐fold accelerated ISC process, and a ≈31.49‐fold elevated reactive oxygen species (ROS) quantum yield. The optimized SP@HD‐PEG 2K lung‐targeting dots enabled real‐time NIR‐II lung imaging, which precisely guided rapid pulmonary coronavirus inactivation.

Topics & Concepts

PhotochemistryChemistryPhotosensitizerMoietyBenzamideDiradicalStereochemistryExcited stateNuclear physicsPhysicsSinglet stateNanoplatforms for cancer theranosticsPerovskite Materials and ApplicationsLuminescence and Fluorescent Materials
Highly Twisted Conformation Thiopyrylium Photosensitizers for In Vivo Near Infrared‐II Imaging and Rapid Inactivation of Coronavirus | Litcius