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基于功能性“V”形配体构建一系列镧系金属有机框架发光传感器。

Construction of a series of Ln-MOF luminescent sensors based on a functional "V" shaped ligand.

作者信息

Liu Xueguang, Liu Wei, Yang Xiaoshan, Kou Yao, Chen Wanmin, Liu Weisheng

机构信息

Laboratory of Nonferrous Metal Chemistry and Resources Utilization of Gansu Province and State Key Laboratory of Applied Organic Chemistry, Key Laboratory of Special Function Materials and Structure Design, Ministry of Education, College of Chemistry and Chemical Engineering, Lanzhou University, Lanzhou 730000, China.

Institute of National Nuclear Industry, Frontiers Science Center for Rare Isotope, School of Nuclear Science and Technology, Key Laboratory of Special Function Materials and Structure Design, Ministry of Education, Lanzhou University, Lanzhou 730000, China.

出版信息

Dalton Trans. 2022 Aug 23;51(33):12549-12557. doi: 10.1039/d2dt01381a.

Abstract

It is necessary to decrease the application cost of luminescent Ln-MOF sensors to develop multiple functionalities. The ingenious design of ligands and the rational doping of Ln ions are the main approaches to endowing Ln-MOFs with more functionalities. "V" shaped ligands can cause diamond pore channels commonly. "OC-NH" groups as hydrogen bonding sites not only can participate in supramolecular self-assembly but also can achieve molecular recognition. Based on the above considerations, a "V" shaped ligand, HL, with a suitable triplet state and "OC-NH" groups was designed and synthesized firstly. And the Ln-MOFs (Ln = Eu, Gd, Tb) were obtained by solvothermal reactions. Single crystal X-ray diffraction showed that Ln-MOFs had two types of diamond pore channels where "OC-NH" groups adhered to the surface. "OC-NH" groups not only played an important role in the stacking process of 2D coordinated layers but also can reduce the non-radiative transition resulting from molecular vibration. The Eu-MOF and Tb-MOF not only can emit strong "f-f" transitions characteristic of luminescence but also can detect -phenylenediamine (OPD) and -phenylenediamine (PPD) by luminescence quenching. Besides, EuTb-MOFs ( = 0.02, 0.05, 0.1) were synthesized and can be used as ratio luminescence thermometers whose maximum relative sensitivities were 1.19% K at 400 K. It is pointed out specifically that the relationship between the relative sensitivities and the Eu content was studied. What's more, our work not only developed a series of Ln-MOF luminescent sensors by designing functional ligands and doping Ln rationally but also provided valuable knowledge for the following work.

摘要

为了开发多种功能,有必要降低发光Ln-MOF传感器的应用成本。配体的巧妙设计和Ln离子的合理掺杂是赋予Ln-MOFs更多功能的主要方法。“V”形配体通常会形成菱形孔道。“OC-NH”基团作为氢键位点,不仅可以参与超分子自组装,还可以实现分子识别。基于上述考虑,首先设计并合成了一种具有合适三重态和“OC-NH”基团的“V”形配体HL。通过溶剂热反应得到了Ln-MOFs(Ln = Eu、Gd、Tb)。单晶X射线衍射表明,Ln-MOFs有两种类型的菱形孔道,“OC-NH”基团附着在其表面。“OC-NH”基团不仅在二维配位层的堆积过程中起重要作用,还可以减少分子振动引起的非辐射跃迁。Eu-MOF和Tb-MOF不仅能发出强烈的“f-f”跃迁特征发光,还能通过发光猝灭检测邻苯二胺(OPD)和对苯二胺(PPD)。此外,合成了EuTb-MOFs( = 0.02、0.05、0.1),它们可用作比率发光温度计,在400 K时最大相对灵敏度为1.19% K。具体指出研究了相对灵敏度与Eu含量之间的关系。更重要的是,我们的工作不仅通过合理设计功能配体和掺杂Ln开发了一系列Ln-MOF发光传感器,还为后续工作提供了有价值的知识。

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