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Synthesis, structure diversity, and dye adsorption and luminescent sensing properties of Zinc (II) coordination polymers based on 1,3,5-tris(1-imidazolyl)benzene and 1,3-bis(1-imidazolyl)toluene
Ist Teil von
Journal of solid state chemistry, 2020-08, Vol.288, p.121445, Article 121445
Ort / Verlag
Elsevier Inc
Erscheinungsjahr
2020
Link zum Volltext
Quelle
Elsevier ScienceDirect Journals Complete
Beschreibungen/Notizen
Three novel Zn(II)-based coordination polymers (Zn-CPs), namely {[Zn(1,3,5-tib)2(H2O)2]·2(NO3)}n (1), [Zn(1,3,5-tib)(4,4′-saba)]n (2), and {[Zn(1,3-bit)(4,4′-cpmb)]·0.5(1,3-bit)}n (3), have been hydrothermally synthesized and successfully characterized by single crystal X-ray diffraction (1,3,5-tib = 1,3,5-tris(1-imidazolyl)benzene), 4,4′-Hsaba = 4-(4-sulfoacid)-benzoic acid, 1,3-bit = 1,3-bis(l-imidazoly)toluene, and 4,4′-H2cpmb = 4-(4-carboxylphenylmethylthio)benzoic acid). Structural analysis reveals that complex 1 manifests a 2D planar structure with an unprecedented (2,4)-c topological network. Complex 2 and complex 3 display a 3-c fes and 6-fold classical Ia interpenetrated dia framework with 4-c (66) sqc6 topology framework, respectively. Among the three complexes, CPs 1 and 2 demonstrate excellent performance for Azo organic dyes’ adsorption, for which the selectivity and kinetics have been comprehensively studied. CPs 3 shows great luminescent intensity in aqueous solution. It is further applied as a fluorescence sensor to detect Fe3+ cation, Cr2O72− anion, and tetracycline antibiotic.
Three Zn(II) coordination polymers (Zn-CPs), {[Zn(1,3,5-tib)2(H2O)2]·2(NO3)}n (1), [Zn(1,3,5-tib)(4,4′-saba)]n (2), and {[Zn(1,3-bit)(4,4′-cpmb)]·0.5(1,3-bit)}n (3), have been hydrothermally prepared. While 1–2 could be applied as a CR dye adsorbent, and 3 could be as a potential sensing material for detection of Fe3+, Cr2O72−, and TC. [Display omitted]
•Three new Zn (II) coordination polymers (Zn-CPs) have been hydrothermally prepared and characterized.•Complexes 1–2 could selectively removal CR dye molecule from aqueous solution.•Complex 3 could be used to detect Fe3+, Cr2O72−, and TC with high selectivity, anti-interference, and repeat-ability.