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				<datestamp>2018-12-31T07:23:25Z</datestamp>
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	<dc:title xml:lang="en-US">Synthesis and spectroscopic study of transition metal complexes of tridentate ligand formed by direct condensation of o-vanillin and 2-aminophenol: X-ray structural characterization of the zinc(II) complex</dc:title>
	<dc:creator>Gueye, Amadou</dc:creator>
	<dc:creator>Tamboura, Farba Bouyagui</dc:creator>
	<dc:creator>Planeix, Jean-Marc</dc:creator>
	<dc:creator>Gruber, Nathalie</dc:creator>
	<dc:creator>Gaye, Mohamed</dc:creator>
	<dc:subject xml:lang="en-US">Schiff base</dc:subject>
	<dc:subject xml:lang="en-US">Benzaldehyde</dc:subject>
	<dc:subject xml:lang="en-US">Metal complexes</dc:subject>
	<dc:subject xml:lang="en-US">Trigonal bipyramidal</dc:subject>
	<dc:subject xml:lang="en-US">X-ray crystallography</dc:subject>
	<dc:subject xml:lang="en-US">Single crystal structure</dc:subject>
	<dc:description xml:lang="en-US">The reactions of the Schiff base 2-((2-hydroxyphenylimino)methyl)-6-methoxyphenol (H2L), obtained by direct condensation of 2-aminophenol and 2-hydroxy-3-methoxybenzaldehyde, with some transition  metal ions (Mn(II), Co(II), Ni(II), Cu(II) and Zn(II)) afforded complexes of general formulae [M2(L)2(solvent)x] (M: Mn, Co, Ni, Cu or Zn; Solvent: DMSO or H2O). These compounds were characterized by elemental analysis, UV-Vis, IR, 1H- and 13C-NMR spectroscopies, molar conductivity and room temperature magnetic measurements. The structure of zinc(II) complex has been determined by X-ray crystallography. Crystal data for C32H34N2O8S2Zn2 (M =769.47 g/mol): Orthorhombic, space group Pbca (no. 61), a = 16.3176(7) Å, b = 9.1247(3) Å, c = 21.8274(10) Å, V = 3250.0(2) Å3, Z = 4, T = 173(2) K, μ(MoKα) = 1.658 mm-1, Dcalc = 1.573 g/cm3, 28116 reflections measured (4.5° ≤ 2Θ ≤ 60.3°), 4457 unique (Rint = 0.0409, Rsigma = 0.0371) which were used in all calculations. The final R1 was 0.0307(0.0466) and wR2 was 0.0649 (0.0701) (all data). The coordination sphere of the Zn center is best described as a trigonal bipyramid.</dc:description>
	<dc:publisher xml:lang="en-US">Atlanta Publishing House LLC</dc:publisher>
	<dc:date>2018-12-31</dc:date>
	<dc:type>info:eu-repo/semantics/article</dc:type>
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	<dc:identifier>https://www.eurjchem.com/index.php/eurjchem/article/view/1761</dc:identifier>
	<dc:identifier>10.5155/eurjchem.9.4.281-286.1761</dc:identifier>
	<dc:source xml:lang="en-US">European Journal of Chemistry; Vol. 9 No. 4 (2018): December 2018; 281-286</dc:source>
	<dc:source>2153-2257</dc:source>
	<dc:source>2153-2249</dc:source>
	<dc:language>eng</dc:language>
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	<dc:relation>https://www.eurjchem.com/index.php/eurjchem/article/view/1761/2607</dc:relation>
	<dc:rights xml:lang="en-US">Copyright (c) 2018 Authors</dc:rights>
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