Aggregation induced bright organic luminogens: Design strategies, advanced bio-imaging and theranostic applications

系统间交叉 磷光 荧光 持续发光 生物成像 聚集诱导发射 生物医学中的光声成像 荧光寿命成像显微镜 单线态氧 纳米技术 材料科学 发光 光化学 化学 激发态 光电子学 单重态 光学 氧气 物理 有机化学 核物理学 热释光
作者
Debasish Barman,Retwik Parui,Kavita Narang,Rajdikshit Gogoi,Parameswar Krishnan Iyer
出处
期刊:Progress in Molecular Biology and Translational Science [Academic Press]
卷期号:: 75-112 被引量:3
标识
DOI:10.1016/bs.pmbts.2021.07.001
摘要

The concept of aggregation-induced emission (AIE) in purely organic luminescent molecules has drawn wide attention in the last two decades. Despite the many challenges, AIE-probes have opened versatile opportunities in many research fields. In particular, the emerging functional properties of room temperature phosphorescence (RTP) and thermally activated delayed fluorescence (TADF) have boosted the unique features of AIE luminogens (AIEgens). Thus, these luminescent materials extended the utility in sensing, imaging, optoelectronics and theranostic applications in biological field over the conventional fluorescent probe. Unlike the sensitivity of triplet state by oxygen and moisture, the long-lived phosphorescence and delayed fluorescence resulting from the enhanced intersystem crossing (ISC) and reverse intersystem crossing (RISC) from excited triplet state (T1) to excited singlet state (S1) in these luminophores gives rise to long lifetimes ranging from nanoseconds to milliseconds even up to seconds. As compared to traditional fluorescence molecules advanced AIE probes show high contrast imaging and deeper penetration depth, which have been demonstrated through near infrared I and II (NIR-I & NIR-II) fluorescence imaging, room temperature after-glow imaging and photoacoustic imaging. This chapter highlights the recent developments and principle of the efficient design of AIE probe with multi-functional properties evolved with new strategies for translational applications via fluorescence imaging, photoacoustic imaging and image-guided photodynamic/photothermal therapy (PDT/PTT) including future opportunities for AIEgens to advance the overall biomedical field.
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