磷光
量子产额
共价键
荧光粉
Atom(片上系统)
产量(工程)
材料科学
分子
纳米技术
光化学
复合数
余辉
化学
化学物理
有机化学
光电子学
物理
荧光
光学
复合材料
嵌入式系统
计算机科学
伽马射线暴
天文
作者
Xin Zheng,Yuanshan Huang,Wei Lv,Jianzhong Fan,Qidan Ling,Zhenghuan Lin
标识
DOI:10.1002/anie.202207104
摘要
Synergism between covalent and non-covalent bonds is employed to fix an organic phosphor guest in a rigid inorganic framework, simulating the stiffening effect seen in the glassy state and realizing efficient and ultralong room-temperature phosphorescence (RTP). Twelve heavy-atom-free composites have been obtained through introducing arylboric or arylcarboxylic acid derivatives into the inorganic boric acid matrix by solid-phase synthesis. Owing to the stiffening effect of multiple bonds, all the composites show highly efficient and persistent RTP of guest molecules with a quantum yield ranging from 39.8 % to ca. 100 % and a lifetime up to 8.74 s, which results in a 55 s afterglow visible to the naked eye after exposure to a portable UV lamp. Interestingly, it is found that the substitution position and quantity of carboxyl in the guest have a great influence on the phosphorescent properties, and that the heavy-atom effect is invalid in such host-guest hybrid systems. The 100 g grade composite is easily prepared because of the solvent-free, green, and simple synthesis method. These results provide an important way for the development of RTP materials with ultrahigh quantum yield and ultralong lifetime, as well as their practical applications in the fields of anti-counterfeiting and information storage, among others.
科研通智能强力驱动
Strongly Powered by AbleSci AI