磷光
材料科学
聚合物
苯胺
微球
化学工程
亮度
纳米技术
玻璃微球
光化学
光电子学
高分子化学
有机电子学
热稳定性
数码产品
原位
共聚物
作者
Yan Zheng,Chaolong Yang,Xiaojing Liang,Limin Wu
摘要
ABSTRACT Room temperature phosphorescence (RTP) polymer materials, known for their unique modifiability and ease of preparation, hold broad potential for applications in flexible electronics and information encryption. However, polymers make their RTP properties with high quantum yields (Φ P ) but short phosphorescence lifetimes (τ P ), or long τ P but low Φ P due to their flexible structure. Herein, we propose a novel in situ cross‐linked self‐assembly strategy of flexible weak RTP polymers into rigid polymer microspheres with long τ P , high Φ P and high brightness. The maximum τ P and Φ P of the RTP microsphere (PM1) reach as high as 2020 ms and 34.1%, with the phosphorescence brightness as high as 655.1 mcd/m 2 , which are 6.4‐, 5.3‐, and 10.2‐fold higher than those of its flexible intrinsic polymer (P1), respectively, and also considerably superior to those of the previously intrinsic polymer RTP materials. Moreover, the cross‐linked polymer microspheres exhibit excellent stability in strong acids and bases, and even after 30 days in water. The RTP microsphere‐doped polymer film (PM1‐PVA) presents highly selective recognition of aniline and a detection sensitivity as low as 3.7 × 10 − 8 m .
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