40 research outputs found

    Two 2,5-bis(2-pyridinyl)-1,3,4-oxadiazole–metal complexes (<i>M</i>= Cu and Ni)

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    Structure cristalline de la chloro-4 bis(chlorométhyl)-3,6 pyridazine

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    Structure cristalline de la dihydroxyméthyl-3,6 pyridazine

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    Structure et interactions magnétiques de composés polymétalliques de basse dimensionnalité

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    Le 2,5 - Bis (pyridin - 2 yl) - 1, 3, 4 - oxadiazole (b.p.o.) est un ligand capable de coordiner un ou plusieurs atomes de Cu(II) selon les conditions expérimentales. La complexation par CuCl2 conduit à la cristallisation d’espèces mononucléaires même en présence d’un large excès de Cu (II). L’introduction dans le milieu réactionnel d’un chlorure de métal bivalent, tel que Ni, Co, Mn, entraîne la formation d’un complexe cuivrique polymétallique cristallisant en chaîne unidimensionnelle. Les structures cristallines ont été résolues par diffraction des rayons X. Le comportement paramagnétique de la chaîne montre qu’il n’y a pas de couplage entre les atomes de Cu(II

    On the relationship between corrosion inhibiting effect and molecular structure of 2,5-bis(<i>n</i>-pyridyl)-1,3,4-thiadiazole derivatives in acidic media: ac impedance and DFT studies

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    The inhibition properties of 2,5-bis(n-pyridyl)-1,3,4-thiadiazoles (n-PTH) on corrosion of mild steel in different acidic media (1 M HCl, 0.5 M H2SO4 and 1 M HClO4) were analyzed by electrochemical impedance spectroscopy (EIS). The n-PTH derivatives exhibit good inhibition properties in different acidic solutions and the calculated values of ΔG°ads revealed that the adsorption mechanism of n-PTH on steel surface is mainly due to chemisorption. While in 1 M HClO4, both 2-PTH and 4-PTH isomers stimulate the corrosion process especially at low concentrations. Quantum chemical calculations using the density functional theory (DFT) were performed on n-PTH derivatives to determine the relationship between molecular structure and their inhibition efficiencies. The results of the quantum chemical calculations and experimental inhibition efficiency were subjected to correlation analysis and indicate that the inhibition effects of n-PTH may be explained in terms of electronic properties
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