Investigation of thermal stability, spectral, magnetic, and antimicrobial behavior for new complexes of Ni with a bismacrocyclic ligand

Novel complexes of type [M.sub.2]L[Cl.sub.4] x n[H.sub.2]O (M: Ni, n = 4; M: Cu, n = 2.5 and M: Zn, n = 1.5; L: ligand resulted from 1,3-phenylenediamine, 3,6-diazaoctane-1,8-diamine, and formaldehyde one-pot condensation) were synthesized and characterized. The ligand was also isolated and characte...

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Veröffentlicht in:Journal of thermal analysis and calorimetry 2013-09, Vol.113 (3), p.1287
Hauptverfasser: Bucur, Cristina, Korosec, Romana Cerc, Badea, Mihaela, Calu, Larisa, Chifiriuc, Mariana Carmen, Grecu, Nicoleta, Stanica, Nicolae, Marinescu, Dana, Olar, Rodica
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Sprache:eng
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Zusammenfassung:Novel complexes of type [M.sub.2]L[Cl.sub.4] x n[H.sub.2]O (M: Ni, n = 4; M: Cu, n = 2.5 and M: Zn, n = 1.5; L: ligand resulted from 1,3-phenylenediamine, 3,6-diazaoctane-1,8-diamine, and formaldehyde one-pot condensation) were synthesized and characterized. The ligand was also isolated and characterized. The complexes features have been assigned from microanalytical, electrospray ionization tandem mass spectrometry, IR, UV-vis, ¹H NMR, and EPR spectra as well as magnetic data at room temperature. Simultaneous thermogravimetric/dynamic scanning calorimetry/evolved gas analysis measurements were performed to evidence the nature of the gaseous products formed in each step. Processes as water elimination, fragmentation, and oxidative degradation of the organic ligand as well as chloride elimination were observed during the thermal decomposition. The final product of decomposition was metal(II) oxide except for copper complex where CuCl remained also in the oxide network. The complexes exhibited an improved antibacterial activity in comparison with the ligand concerning both planktonic as well as biofilm-embedded cells.
ISSN:1388-6150
1588-2926
DOI:10.1007/s10973-012-2912-3