磷光
余辉
持续发光
近红外光谱
材料科学
磷光有机发光二极管
光电子学
能量转移
光化学
纳米技术
化学
发光
化学物理
光学
荧光
物理
热释光
伽马射线暴
天文
作者
Shu-Hui Li,Juqing Gu,Jiaqiang Wang,Wentao Yuan,Guigui Ye,Likai Yuan,Qiuyan Liao,Le Wang,Zhen Li,Qianqian Li
标识
DOI:10.1002/advs.202402846
摘要
Abstract Organic near‐infrared (NIR) room temperature phosphorescence (RTP) materials become a hot topic in bioimaging and biosensing for the large penetration depth and high signal‐to‐background ratio (SBR). However, it is challenging to achieve persistent NIR phosphorescence for severe nonradiative transitions by energy‐gap law. Herein, a universal system with persistent NIR RTP is built by visible (host) and NIR phosphorescence (guest) materials, which can efficiently suppress the nonradiative transitions by rigid environment of crystalline host materials with good matching, and further promote phosphorescence emission by the additional phosphorescence resonance energy transfer (≈100%) between them. The persistent NIR phosphorescence with ten‐folds enhancement of RTP lifetimes, compared to those of guest luminogens, can be achieved by modulation of aggregated structures of host–guest systems. This work provides a convenient way to largely prolong the phosphorescence lifetimes of various NIR luminogens, promoting their application in afterglow imaging with deeper penetration and higher SBRs.
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