Chen Ying-Jun, Dou Chang-Xun, Yin Pei-Pei, Chen Jun-Ting, Yang Xiao-Gang, Li Bo, Ma Lu-Fang, Wang Li-Ya
College of Chemistry and Pharmacy Engineering, Nanyang Normal University, Nanyang, 473061, P. R. China.
College of Chemistry and Chemical Engineering, Luoyang Normal University, Luoyang 471934, P. R. China.
Dalton Trans. 2023 Oct 10;52(39):13872-13877. doi: 10.1039/d3dt01869e.
Lanthanide metal-organic framework (Ln-MOF) based phosphors for light-emitting diodes (LEDs) play an important role in the fields of solid-state lighting and display. The rational design of organic antennae to address the drawback of low extinction coefficients of the lanthanide ions is highly desired. In this work, we provide a new design strategy to achieve an energy transfer molecule with a through-space conjugated folded structure, which can strengthen the skeleton rigidity and facilitate triplet state energy transfer. Consequently, one U-type π-conjugated molecule 2,6-bis(3,5-dicarboxylphenoxy) pyridine (HL) was selected as a light gatherer to sensitize lanthanide ions for the construction of Ln-MOFs [Ln(HL)(HO)] (Eu-MOF and Tb-MOF), which exhibit a long-lived luminescence lifetime (0.88 ms for Eu-MOF and 1.31 ms for Tb-MOF) and high quantum yields (50.87% for Eu-MOF and 85.64% for Tb-MOF). Furthermore, a white LED device with a colour rendering index (89) was fabricated using the mixture of Ln-MOFs with a commercial blue phosphor.
基于镧系金属有机框架(Ln-MOF)的发光二极管(LED)荧光粉在固态照明和显示领域发挥着重要作用。迫切需要合理设计有机天线来解决镧系离子消光系数低的缺点。在这项工作中,我们提供了一种新的设计策略,以实现具有空间共轭折叠结构的能量转移分子,该结构可以增强骨架刚性并促进三重态能量转移。因此,选择了一种U型π共轭分子2,6-双(3,5-二羧基苯氧基)吡啶(HL)作为光收集器,以敏化镧系离子用于构建Ln-MOFs [Ln(HL)(HO)](铕基MOF和铽基MOF),它们表现出长寿命的发光寿命(铕基MOF为0.88毫秒,铽基MOF为1.31毫秒)和高量子产率(铕基MOF为50.87%,铽基MOF为85.64%)。此外,使用Ln-MOFs与商用蓝色荧光粉的混合物制备了显色指数为89的白色LED器件。