Article ID Journal Published Year Pages File Type
674013 Thermochimica Acta 2012 7 Pages PDF
Abstract

Four lanthanide complexes with a general formula [Ln(3,5-Dipr-2-OHBA)3(phen)]2 (Ln = La(1), Nd(2), Eu(3) and Tb(4); 3,5-Dipr-2-OHBA = 3,5-diisopropylsalicylate; phen = 1,10-phenanthroline) were synthesized and characterized by elemental analysis, infrared spectra (IR), powder X-ray diffraction (XRD) and thermogravimetry, differential scanning calorimetry techniques with Fourier transform infrared (TG/DSC–FTIR) technology. The luminescent properties of the complexes 3 and 4 were studied. The thermal decomposition processes of the title compounds were studied using the TG/DSC–FTIR coupling techniques. Heat capacities of the complexes were measured by DSC. And the values of the experimental heat capacities were fitted to a polynomial equation with the least-squares method. Based on the fitted polynomial and thermodynamic equations, the smoothed heat capacities and thermodynamic functions (HT − H298.15 K), (ST − S298.15 K), and (GT − G298.15 K) were calculated.

Graphical abstractFour novel complexes ([Ln(3,5-Dipr-2-OHBA)3(phen)]2 (Ln = La(1), Nd(2), Eu(3), Tb(4); 3,5-Dipr-2-OHBA = 3,5-diisopropylsalicylate; phen = 1,10-phenanthroline)) were synthesized and characterized by elemental analysis, IR, XRD and TG/DSC–FTIR technology. Heat capacities of the four complexes were measured by differential scanning calorimetry (DSC). The luminescent properties of the complexes 3 and 4 were also studied.Figure optionsDownload full-size imageDownload as PowerPoint slideHighlights► Four novel complexes [Ln(3,5-Dipr-2-OHBA)3(phen)]2 were synthesized and characterized. ► The thermal decomposition process of the title complexes was studied using the TG/DSC–FTIR coupling techniques. ► The heat capacities of the complexes were measured by (DSC). ► The thermodynamic parameters were also obtained on the base of the fitted polynomials. ► The fluorescence properties of the complexes 3 and 4 were studied.

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Physical Sciences and Engineering Chemical Engineering Fluid Flow and Transfer Processes
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