材料科学
发光
系统间交叉
荧光粉
持续发光
光化学
激发
激发态
纳米技术
量子产额
单重态
光电子学
荧光
原子物理学
光学
化学
工程类
物理
电气工程
热释光
作者
Zhonghao Wang,Yongfeng Zhang,Chang Wang,Xian Zheng,Yan Zheng,Liang Gao,Chaolong Yang,Youbing Li,Lunjun Qu,Yanli Zhao
标识
DOI:10.1002/adma.201907355
摘要
Organic long-persistent luminescence (OLPL) materials have attracted wide attention on account of their fascinating luminescence properties, presenting application prospects in the fields of bioimaging, information security, displays, anti-counterfeiting, and so on. Some effective strategies have been developed to promote the intersystem crossing (ISC) of the excited singlet state to triplet state and limit nonradiative transition, and thus OLPL materials with long lifetime (more than 1s) and high quantum yield have been explored. However, OLPL materials with dynamic and excitation-dependent characteristics are rarely reported. In this work, two novel polyphosphazene derivatives containing carbazolyl units are designed and synthesized successfully, and then they are doped into poly(vinyl alcohol) (PVA) films to achieve polymeric long-persistent luminescence (PLPL). Unexpectedly, excitation-dependent PLPL (ED-PLPL) is obtained under ambient conditions (in air at room temperature), and the persistent luminescence color can be changed from blue to green upon varying the excitation wavelength. At the same time, a dynamic cycle of ED-PLPL is realized based on the formation and destruction of hydrogen bonding interactions between the PVA chains and polyphosphazene phosphor. This work provides a new strategy for the design of color-tunable polymeric luminescent materials under ambient conditions.
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