发色团
磷光
系列(地层学)
材料科学
变硬
蓝光
纳米技术
光电子学
光学
复合材料
化学
光化学
物理
地质学
荧光
古生物学
作者
Zhihao Guan,Zhikai Tang,Jing Zeng,Yuewei Zheng,Jie Xu,Dongzhi Chen,Houbin Li,Xing‐Hai Liu
标识
DOI:10.1002/advs.202402632
摘要
Abstract Ultralong room‐temperature phosphorescent (URTP) materials have attracted wide attention in anti‐counterfeiting, optoelectronic display, and bio‐imaging due to their special optical properties. However, room‐temperature blue phosphorescent materials are very scarce during applications because of the need to simultaneously populate and stabilize high‐energy excited states. In this work, a stepwise stiffening chromophore strategy is proposed to suppress non‐radiative jump by continuously reducing the internal spin of the chromophore, and successfully developing a series of blue phosphorescent materials. Phosphorescence lifetimes of more than 3 s are achieved, with the longest lifetime reaching 5.44 s and lasting more than 70 s in the naked eye. As far as is know, this is the best result that has been reported. By adjusting the chromophore conjugation, multicolor phosphorescences from cyan to green have been realized. In addition, these chromophores exhibit the same excellent optical properties in urea and polyvinyl alcohmance (PVA). Finally, these materials are successfully applied to luminescent displays.
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