Wei Wei, Li Xi, Zhang Yong-Ya, Zhang Jian-Wei
School of Chemistry and Chemical Engineering, Shangqiu Normal University Shangqiu Henan 476000 P. R. China
RSC Adv. 2024 Sep 5;14(39):28340-28344. doi: 10.1039/d4ra05796a. eCollection 2024 Sep 4.
Introducing lanthanide(iii) ions into a MOF structure is one of the most effective strategies to construct luminescent MOFs with multiple emission centers for fluorescent applications. In this work, a functionalized Eu-doped Y-MOF (Eu@SNNU-325) was constructed by using a cation exchange strategy. The photoluminescence result shows that Eu@SNNU-325 exhibits a unique emission spectrum, namely, the absence of the organic ligand peak and the very strong Y/Eu characteristic peaks. Interestingly, the smart luminescent Eu@SNNU-325 as a ratiometric thermometer for temperature sensing has good self-calibrated ability and a high maximum relative sensitivity ( ) value (1.2% K at 260 K). This work presents the construction of a smart Eu-functionalized Y-MOF thermometer through a cation exchange strategy, providing a good idea for the future development and design of Y-MOF thermometers.
将镧系(III)离子引入金属有机框架(MOF)结构是构建具有多个发射中心的发光MOF以用于荧光应用的最有效策略之一。在这项工作中,通过阳离子交换策略构建了一种功能化的Eu掺杂Y-MOF (Eu@SNNU-325)。光致发光结果表明,Eu@SNNU-325呈现出独特的发射光谱,即不存在有机配体峰以及非常强的Y/Eu特征峰。有趣的是,智能发光的Eu@SNNU-325作为用于温度传感的比率温度计具有良好的自校准能力和较高的最大相对灵敏度( )值(在260 K时为1.2% K)。这项工作展示了通过阳离子交换策略构建智能Eu功能化Y-MOF温度计,为Y-MOF温度计的未来发展和设计提供了一个好思路。