化学
量子产额
光诱导电子转移
荧光
罗丹明
产量(工程)
电子转移
发光
合理设计
量子
生物传感器
纳米技术
光化学
生物系统
光电子学
光学
材料科学
物理
量子力学
生物
冶金
生物化学
作者
Weijie Chi,Jie Chen,Wenjuan Liu,Chao Wang,Qingkai Qi,Qinglong Qiao,Tee Meng Tan,Kangming Xiong,Xiao Liu,Keegan Kang,Young‐Tae Chang,Zhaochao Xu,Xiaogang Liu
摘要
Photoinduced electron transfer (PET) is one of the most important mechanisms for developing fluorescent probes and biosensors. Quantitative prediction of the quantum yields of these probes and sensors is crucial to accelerate the rational development of novel PET-based functional materials. Herein, we developed a general descriptor (ΔE) for predicting the quantum yield of PET probes, with a threshold value of ∼0.6 eV. When ΔE < ∼0.6 eV, the quantum yield is low (mostly <2%) due to the substantial activation of PET in polar environments; when ΔE > ∼0.6 eV, the quantum yield is high because of the inhibition of PET. This simple yet effective descriptor is applicable to a wide range of fluorophores, such as BODIPY, fluorescein, rhodamine, and Si-rhodamine. This ΔE descriptor enables us not only to establish new applications for existing PET probes but also to quantitatively design novel PET-based fluorophores for wash-free bioimaging and AIEgen development.
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