激子
磷光
系统间交叉
光致发光
光化学
三重态
单重态
分子
材料科学
量子产额
发光
物理
荧光
光电子学
化学
光学
原子物理学
激发态
量子力学
有机化学
作者
Jing Wang,Xinyi Yang,Sheng Wang,Yunfan Fei,Fang Li,Haiyan Zheng,Kuo Li,Yibo Han,Takanori Hattori,Pinwen Zhu,Shuaiqiang Zhao,Leiming Fang,Xuyuan Hou,Zhaodong Liu,Bing Yang,Bo Zou
标识
DOI:10.1038/s41467-024-52196-7
摘要
Abstract Luminescent materials that simultaneously embody bright singlet and triplet excitons hold great potential in optoelectronics, signage, and information encryption. However, achieving high-performance white-light emission is severely hampered by their inherent unbalanced contribution of fluorescence and phosphorescence. Herein, we address this challenge by pressure treatment engineering via the hydrogen bonding cooperativity effect to realize the mixture of n –π*/π–π* transitions, where the triplet state emission was boosted from 7% to 40% in isophthalic acid (IPA). A superior white-light emission based on hybrid fluorescence and phosphorescence was harvested in pressure-treated IPA, and the photoluminescence quantum yield was increased to 75% from the initial 19% (blue-light emission). In-situ high-pressure IR spectra, X-ray diffraction, and neutron diffraction reveal continuous strengthening of the hydrogen bonds with the increase of pressure. Furthermore, this enhanced hydrogen bond is retained down to the ambient conditions after pressure treatment, awarding the targeted IPA efficient intersystem crossing for balanced singlet/triplet excitons population and resulting in efficient white-light emission. This work not only proposes a route for brightening triplet states in organic small molecules, but also regulates the ratio of singlet and triplet excitons to construct high-performance white-light emission.
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