A gas-selective Zn-MOF exhibits selective sensing of Fe 3+ ions by doping with Tb 3 .

Dalton transactions (Cambridge, England : 2003)(2023)

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摘要
Here, a new Zn metal organic framework, {[MeNH][Zn(L)(DTZ)]·2DMF·3HO} (Zn-MOF), has been synthesized with low-symmetric carboxylic acid ligand 2,6 bis(2',5'-dicarboxyphenyl)pyridine (HL) as the main ligand and 3,5-diamino-1,2,4-riazole (DTZ) containing an electron-rich N atom as an auxiliary ligand. Because of its high structural stability and adsorption properties, it can be used to efficiently separate CO/CH and CH/CH. In addition, Tb@Zn-MOF was obtained by doping with Tb to partially replace Zn. A study of its luminescence sensing performance demonstrated that Tb@Zn-MOF showed intense luminescence properties and can be used for the directional detection of Fe in aqueous solution. Furthermore, PXRD analysis, UV-vis spectroscopy and X-ray photoelectron spectroscopy (XPS) were also used to study possible luminescence sensing mechanisms. The recognition mechanism for Fe ions is believed to be caused by electron transfer.
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