An efficient “hot exciton” fluorophore based on a dicyanophenanthrene-triphenylamine hybrid

Author:

Chen Wen-Cheng,Zheng Fan,Liu Qiang,Liu Xiao-LongORCID,Wang Ru-JiaORCID,Wu Qiao-Er,Qi Lin-Na,Chen Jia-Xiong,Yin Shaoyun,Zhang Yuzhen,Yang Qingdan,Ji Shaomin,Huo YanpingORCID

Funder

National Natural Science Foundation of China

Publisher

Elsevier BV

Reference56 articles.

1. Highly efficient organic light-emitting diodes from delayed fluorescence;Uoyama;Nature,2012

2. Organic long persistent luminescence;Kabe;Nature,2017

3. Near-Infrared thermally activated delayed fluorescence nanoparticle: a metal-free photosensitizer for two-photon-activated photodynamic therapy at the cell and small animal levels;Fang;Small,2022

4. Continuous spatiotemporal therapy of A full-API nanodrug via multi-step tandem endogenous biosynthesis;Fang;Nat Commun,2023

5. Photo-controllable luminescence from radicals leading to ratiometric emission switching via dynamic intermolecular coupling;Jin;Angew Chem Int Ed,2023

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