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Metal(II) nicotinamide complexes containing succinato, succinate and succinic acid: Synthesis, crystal structures, magnetic, thermal, antimicrobial and fluorescent properties

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Yılmaz, Veysel Turan

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Demir, Selçuk
Sarıboğa, Bahtiyar
Büyükgüngör, Orhan
Mrozinski, Jerzy

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Springer

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Abstract

Four novel divalent transitional metal succinates (suc) with nicotinamide (nia), {[M(mu-suc)(H2O)(2)(nia)(2)]center dot 2H(2)O}(n) [M = Mn (1), Ni (2)], [Cu(suc)(nia)(2)] (3) and [Ni(H2O)(4)(nia)(2)](suc)center dot(H(2)suc) (4), have been synthesized and characterized by elemental analyses, IR and TG-DTA. X-ray analyses of 2 and 4 reveal that they crystallize in a triclinic space group P (1) over bar. Complex 2 is a 1-D coordination polymer, in which the metal(II) ions exhibit an octahedral geometry with two suc, two nia and two aqua ligands. The nia ligand is N-bonded, while the suc ligand bridges the metal centres through the carboxylate groups. 4 contains the [Ni(H2O)(4)(nia)(2)](2+) complex cations, uncoordinated suc and H(2)suc species, which are connected into a two-dimensional layered structure by the combination of N-H center dot center dot center dot O and OWH center dot center dot center dot O hydrogen bonds. This is one of the scarce examples encountered in coordination chemistry, which contains uncoordinated suc and H(2)suc at the same time. The spectroscopic and structural analysis, luminescent and magnetic properties and the antimicrobial activities of the synthesized complexes were investigated.

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Succinate complexes, Nicotinamide, Crystal structure, Antimicrobial activity, Thermal analysis, Magnetic properties, PI stacking interactions, Coordination polymers, Aliphatic dicarboxylates, Helical chains, Copper(II), H2L, 1,10-phenanthroline, Cobalt(II), Frameworks, Nickel, Polymer science

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Demir, S. vd. (2010). "Metal(II) nicotinamide complexes containing succinato, succinate and succinic acid: Synthesis, crystal structures, magnetic, thermal, antimicrobial and fluorescent properties". Journal of Inorganic and Organometallic Polymers and Materials, 20(2), 220-228.

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