Synthesis, crystal and molecular structure of tetraaquabis(nicotinamide)cobalt(II) phthalate dihydrate
Identifieur interne : 001153 ( Main/Exploration ); précédent : 001152; suivant : 001154Synthesis, crystal and molecular structure of tetraaquabis(nicotinamide)cobalt(II) phthalate dihydrate
Auteurs : A. S. Antsyshkina [Russie] ; G. G. Sadikov [Russie] ; T. V. Koksharova [Ukraine] ; I. S. Gritsenko [Ukraine] ; V. S. Sergienko [Russie]Source :
- Russian Journal of Inorganic Chemistry [ 0036-0236 ] ; 2009-08-01.
Abstract
Abstract: The coordination compound of cobalt(II) with nicotinamide [CoL2(H2O)4][C6H4(COO)2] · 2H2O (I) (where L stands for nicotinamide) was synthesized and characterized by IR spectroscopy, conductometry, and thermogravimetry. The X-ray structure of complex I was determined. Crystals are monoclinic: a = 15.630(2) Å, b = 7.550(2) Å, c = 21.035(4) Å, β = 100.90(5)°, V = 2437.4(4) Å3, Z = 4, space group C2/c. The structural units of complex I are centrosymmetrical cations [CoL2(H2O)4]2+, anions [C6H4(COO)2]2− (lying on axis 2), and molecules of waster of crystallization. Complex cations are packed into layers are alternate with layers containing anions and free H2O molecules. This is a classical case of π-π-staking interactions that lead to the formation of supramolecular layered assemblies.
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DOI: 10.1134/S003602360908021X
Affiliations:
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<front><div type="abstract" xml:lang="en">Abstract: The coordination compound of cobalt(II) with nicotinamide [CoL2(H2O)4][C6H4(COO)2] · 2H2O (I) (where L stands for nicotinamide) was synthesized and characterized by IR spectroscopy, conductometry, and thermogravimetry. The X-ray structure of complex I was determined. Crystals are monoclinic: a = 15.630(2) Å, b = 7.550(2) Å, c = 21.035(4) Å, β = 100.90(5)°, V = 2437.4(4) Å3, Z = 4, space group C2/c. The structural units of complex I are centrosymmetrical cations [CoL2(H2O)4]2+, anions [C6H4(COO)2]2− (lying on axis 2), and molecules of waster of crystallization. Complex cations are packed into layers are alternate with layers containing anions and free H2O molecules. This is a classical case of π-π-staking interactions that lead to the formation of supramolecular layered assemblies.</div>
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