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	<dc:title xml:lang="en-US">Synthesis and crystal structure of the copper (II) carboxylate with 2,2-bipyridine, [Cu(4-mba)2(bipy)(H2O)]</dc:title>
	<dc:creator>Kanmazalp, Sibel Demir</dc:creator>
	<dc:creator>Qadir, Adnan</dc:creator>
	<dc:creator>Dege, Necmi</dc:creator>
	<dc:subject xml:lang="en-US">Synthesis</dc:subject>
	<dc:subject xml:lang="en-US">Carboxylate</dc:subject>
	<dc:subject xml:lang="en-US">Cu(II) complex</dc:subject>
	<dc:subject xml:lang="en-US">Crystal structure</dc:subject>
	<dc:subject xml:lang="en-US">Single-crystal XRD</dc:subject>
	<dc:subject xml:lang="en-US">Hydrogen bonding</dc:subject>
	<dc:description xml:lang="en-US">The new Cu(II) carboxylate complex, aqua(2,2&#039;-bipyridine-κ2N,N&#039;)bis(4-methylbenzoato-κO)copper(II) [Cu(4-mba)2(bipy)(H2O)] (4-mba: 4-methylbenzoate, bipy: 2,2&#039;-bipyridine) was synthesized, and the molecular structure of the complex was characterized by the single crystal X-ray diffraction technique. The X-ray diffraction analysis indicated that the asymmetric unit comprises an independent molecule. Crystal data for [Cu(4-meb)2(2,2-bipy)(H2O)]: Triclinic, space group P-1 (no. 2), a = 7.0452(13) Å, b = 11.260(2) Å, c = 16.635(3) Å, α = 103.543(7)°, β = 91.002(7)°, γ = 104.106(6)°, V = 1240.4(4) Å3, Z = 2, T = 296 K, μ(MoKα) = 0.918 mm-1, Dcalc = 1.360 g/cm3, 51364 reflections measured (5.054° ≤ 2Θ ≤ 57.38°), 6258 unique (Rint = 0.0398, Rsigma = 0.0284) which were used in all calculations. The final R1 was 0.0392 (I &amp;gt; 2σ(I)) and wR2 was 0.1021 (all data). The Cu(II) ion was found to be coordinated with two nitrogen atoms of the 2,2&#039;-bipyridine ligand, two oxygen atoms of the 4-methyl benzoate molecule, and one oxygen atom of the aqua ligand. In the three-dimensional supramolecular architecture, molecules are connected through pairs of O-H···O and C-H···O intermolecular interactions, consisting of chains. The molecule also demonstrates Cg···Cg intermolecular interactions between six-membered rings of 2,2&#039;-bipyridine.</dc:description>
	<dc:publisher xml:lang="en-US">Atlanta Publishing House LLC</dc:publisher>
	<dc:date>2023-03-31</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/2390</dc:identifier>
	<dc:identifier>10.5155/eurjchem.14.1.109-113.2390</dc:identifier>
	<dc:source xml:lang="en-US">European Journal of Chemistry; Vol. 14 No. 1 (2023): March 2023; 109-113</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/2390/2742</dc:relation>
	<dc:rights xml:lang="en-US">Copyright (c) 2023 Authors</dc:rights>
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