Regulating Triplet Excitons of Organic Luminophores for Promoted Bioimaging

Author:

Zhao Zhipeng1,Du Rui1,Feng Xiaodi2,Wang Zhengshuo1,Wang Tianjie1,Xie Zongzhao1,Yuan Hua1,Tan Yeqiang1,Ou Hanlin1

Affiliation:

1. State Key Laboratory of Bio-Fibers and Eco-Textiles, Collaborative Innovation Center of Marine Biobased Fiber and Ecological Textile Technology, College of Materials Science and Engineering, Qingdao University, No. 308 Ningxia Rd., Shinan District, Qingdao, 266071, China

2. Qingdao Hiser Hospital Affiliated of Qingdao University (Qingdao Traditional Chinese Medicine Hospital), No. 4 Renmin Rd., Shibei District, Qingdao, 266033, China

Abstract

Abstract: Afterglow materials with organic room temperature phosphorescence (RTP) or thermally activated delayed fluorescence (TADF) exhibit significant potential in biological imaging due to their long lifetime. By utilizing time-resolved technology, interference from biological tissue fluorescence can be mitigated, enabling high signal-- to-background ratio imaging. Despite the continued emergence of individual reports on RTP or TADF in recent years, comprehensive reviews addressing these two materials are rare. Therefore, this review aims to provide a comprehensive overview of several typical molecular designs for organic RTP and TADF materials. It also explores the primary methods through which triplet excitons resist quenching by water and oxygen. Furthermore, we analyze the principal challenges faced by afterglow materials and discuss key directions for future research with the hope of inspiring developments in afterglow imaging.

Publisher

Bentham Science Publishers Ltd.

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