Article ID Journal Published Year Pages File Type
1235148 Spectrochimica Acta Part A: Molecular and Biomolecular Spectroscopy 2011 6 Pages PDF
Abstract

Supramolecular coordination of dioxouranium(VI) heterochelates 5-sulphono-7-(4′-X phenylazo)-8-hydroxyquinoline HLn (n = 1, X = CH3; n = 2, X = H; n = 3, X = Cl; n = 4, X = NO2) have been prepared and characterized with various physico-chemical techniques. The infrared spectral studies showed a monobasic bidentate behavior with the oxygen and azonitrogen donor system. The temperature dependence of the D.C. electrical conductivity of HLn ligands and their uranyl complexes has been studied in the temperature range 305–415 K. The thermal activation energies Ea for HLn compounds were found to be in the range 0.44–0.9 eV depending on the nature of the substituent X. The complexation process decreased Ea values to the range 0.043–045 eV. The electrical conduction mechanism has been investigated for all samples under investigation. It was found to obey the variable range hopping mechanism (VRH).

Graphical abstractAfter complexation process, all uranyl complexes showed an increase in σdc by increasing the temperature and gave lower values of Ea than those of their corresponding ligands. All the compounds under investigation obeyed the variable range hopping mechanism (VRH) with the three dimensional system.Figure optionsDownload full-size imageDownload as PowerPoint slideHighlights► Novel complexes of UO22+ with new azo ligands HLn have been prepared. ► The temperature dependence of the D.C. electrical conductivity of HLn ligands and their uranyl complexes has been studied. ► The thermal activation energies Ea for HLn compounds were found to be in the range 0.44–0.9 eV. ► The complexation process decreased Ea values to the range 0.043–045 eV. ► The electrical conduction mechanism for all samples under investigation was found to obey the variable range hopping mechanism (VRH).

Related Topics
Physical Sciences and Engineering Chemistry Analytical Chemistry
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