材料科学
发光
兴奋剂
余辉
分子
结晶
纳米技术
光电子学
化学工程
有机化学
天文
伽马射线暴
物理
工程类
化学
作者
Jiangli Han,Wenhui Feng,Desissa Yadeta Muleta,Chelsea N. Bridgmohan,Yangyang Dang,Guohua Xie,Hao‐Li Zhang,Xueqin Zhou,Wei Li,Lichang Wang,Dongzhi Liu,Yanfeng Dang,Tianyang Wang,Wenping Hu
标识
DOI:10.1002/adfm.201902503
摘要
Abstract Traditional long‐persistent luminescence (LPL) materials, which are based on inorganic systems containing rare elements and with preparation temperatures of at least 1000 °C, exhibit afterglow times of more than 10 h and can be tuned for different applications. However, the development of this field is hindered due to the large thermal energy consumption and the need for nonrenewable resources. Thus, the development of a “green” design and preparation of LPL materials is of some importance. A doped‐crystalline material based on two metal‐free organic small molecules is easily prepared through ultrasonic crystallization at room temperature. It has a high‐quality, single‐crystalline structure, and visible LPL performance with a duration of more than 6 s upon low‐energy photoexcitation. A green, flexible, and convenient screen‐printing technology for controllable pattern anticounterfeiting is then developed from this purely organic material, which improves the prospects for commercial utilization in the future.
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