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One-dimensional channel-structured Eu-MOF for sensing small organic molecules and Cu2+ ion
358
Citations
43
References
2013
Year
EngineeringOrganic ChemistryChemistryLuminescence PropertySmall Organic MoleculesChemical EngineeringPhosphorescence ImagingCu2+ IonNanosensorOne-dimensional Channel-structured Eu-mofCation SensingChemical SensorPorous SensorPhotophysical PropertyPhotochemistryOrganic LinkerEu3+ IonElectronic MaterialsApplied PhysicsMetal–organic Frameworks LnMolecule-based MaterialPhosphorescence
Two new lanthanide metal–organic frameworks Ln(FBPT)(H2O)(DMF) (FBPT = 2′-fluoro-biphenyl-3,4′,5-tricarboxylate, Ln = Eu and Tb) were prepared under solvothermal conditions. Single crystal X-ray diffraction analyses reveal that the two compounds are isostructurally related with the same one-dimensional channel structure on the basis of FBPT as an organic linker. Herein, the Eu(FBPT)(H2O)(DMF) (EuL) is selected as a representative sample for luminescent measurements. Study of the photoluminescence properties reveals that the EuL exhibits red emission, corresponding to the 5D0 → 7FJ (J = 1–4) transitions of the Eu3+ ion under UV light excitation. Most interestingly, when this compound was immersed in the different organic solvents and metal ion DMF solutions, it shows highly selective and sensitive sensing for small organic molecules and Cu2+ ions. In connection to this, a probable sensing mechanism was also discussed in this paper.
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