scholarly journals Diaquatetrakis(μ-3-methoxybenzoato-κ2 O 1:O 1′)dicopper(II)

IUCrData ◽  
2020 ◽  
Vol 5 (4) ◽  
Author(s):  
Bikshandarkoil R. Srinivasan ◽  
Pooja H. Bhargao ◽  
P. K. Sudhadevi

The asymmetric unit of the binuclear title compound, [Cu2(C8H7O3)4(H2O)2], comprises two halves of diaquatetrakis(μ-3-methoxybenzoato-κ2 O 1:O 1′)dicopper(II) units. The paddle-wheel structure of each complex is completed by application of inversion symmetry, with the inversion centre situated at the midpoint between two CuII atoms in each dimer. The two CuII atoms of each centrosymmetric dimer are bridged by four 3-methoxybenzoate anions resulting in Cu...Cu separations of 2.5961 (11) and 2.6060 (12) Å, respectively. The square-pyramidal coordination sphere of each CuII atom is completed by an apical water molecule. Intermolecular O—H...O hydrogen bonds of weak nature link the complexes into layers parallel to (100). The three-dimensional network structure is accomplished by C—H...O hydrogen bonds interlinking adjacent layers.

2020 ◽  
Vol 76 (10) ◽  
pp. 1645-1648
Author(s):  
Bhawani Sigdel Regmi ◽  
Allen Apblett ◽  
Douglas Powell

The asymmetric unit of the title compound, 2,4,6-triamino-1,3,5-triazin-1-ium cyanoacetate monohydrate, C3H7N6 +·NCCH2COO−·H2O, consists of a melaminium cation, a cyanoacetate anion and a water molecule, which are connected to each other via N—H...O and O—H...O hydrogen bonds, generating an eight-membered ring. In the crystal, the melaminium cations are connected by two pairs of N—H...N hydrogen bonds, forming tapes along [110]. These tapes develop a three-dimensional network through N—H...O, O—H...O, N—H...N and C—H...O hydrogen bonds between the cations, anions and water molecules.


Author(s):  
S. Vetrivel ◽  
E. Vinoth ◽  
R. U. Mullai ◽  
R. Aruljothi ◽  
M. NizamMohideen

The asymmetric unit of the organic–inorganic title salt, (C10H28N4)[Cr2O7]2, comprises one half of an 1,4-bis(3-ammoniopropyl)piperazinediium cation (the other half being generated by the application of inversion symmetry) and a dichromate anion. The piperazine ring of the cation adopts a chair conformation, and the two CrO4tetrahedra of the anion are in an almost eclipsed conformation. In the crystal, the cations and anions form a layered arrangement parallel to (001). N—H...O hydrogen bonds between the cations and anions and additional C—H...O interactions lead to the formation of a three-dimensional network structure.


Author(s):  
C. S. Chidan Kumar ◽  
Ai Jia Sim ◽  
Weng Zhun Ng ◽  
Tze Shyang Chia ◽  
Wan-Sin Loh ◽  
...  

The asymmetric unit of the title compound, C15H15N3O3·0.5H2O, comprises two 2-{[(4-iminiumyl-3-methyl-1,4-dihydropyridin-1-yl)methyl]carbamoyl}benzoate zwitterions (AandB) and a water molecule. The dihedral angles between the pyridine and phenyl rings in the zwitterions are 53.69 (10) and 73.56 (11)° inAandB, respectively. In the crystal, molecules are linked by N—H...O, O—H...O, C—H...O and C—H...π(ring) hydrogen bonds into a three-dimensional network. The crystal structure also features π–π interactions involving the centroids of the pyridine and phenyl rings [centroid–centroid distances = 3.5618 (12) Å inAand 3.8182 (14) Å inB].


2015 ◽  
Vol 71 (6) ◽  
pp. m127-m128
Author(s):  
Chao Wu ◽  
Peng Cao

The asymmetric unit of the polymeric title compound, [Ni(C8H4O4)(C10H14N4)(H2O)]n, contains one Ni2+cation, one coordinating water molecule, one 3,3′,5,5′-tetramethyl-4,4′-bipyrazole ligand and half each of two benzene-1,4-dicarboxylate anions, the other halves being generated by inversion symmetry. The Ni2+cation exhibits an octahedral N2O4coordination sphere defined by the O atoms of the water molecule and two different anions and the N atoms of two symmetry-relatedN-heterocycles. TheN-heterocycles and both anions bridge adjacent Ni2+cations into a three-dimensional network structure, with one of the anions in a bis-bidentate and the other in a bis-monodentate bridging mode. N—H...O and O—H...O hydrogen bonds between the N-heterocycles and water molecules as donor groups and the carboxylate O atoms as acceptor groups consolidate the crystal packing.


2009 ◽  
Vol 65 (6) ◽  
pp. m629-m629 ◽  
Author(s):  
Li-Zhen Zhao ◽  
Ping Li ◽  
Bao-Liang Cao ◽  
Seik Weng Ng

The title compound, {[Cd(C4H4O6)]·0.167H2O}n, adopts a three-dimensional network structure in which each CdIIion is chelated by two pairs of carboxylate and hydroxyl O atoms from two tartrate anions, and is additionally linked to two O atoms of two carboxylate groups that are not involved in chelation. The asymmetric unit has four independent cadmium atoms, two of which lie on special positions of 2 site symmetry. The tartrate anions all lie on general positions. All hydroxyl groups are engaged in O—H...O hydrogen-bonds, one of which is also bifurcated. The non-coordinating water molecule is situated on a site with half-occupation.


2012 ◽  
Vol 68 (6) ◽  
pp. o1942-o1942
Author(s):  
Zheng-De Tan ◽  
Feng-Jiao Tan ◽  
Bo Tan ◽  
Cheng-Ming Zhang

In the title compound, 2C8H7N3·C8H6O4·2H2O, the pyridine and pyrazole rings are approximately coplanar, the dihedral angle between them being 4.69 (9)°. The asymmetric unit consists of half of the terephthalic acid (an inversion centre generates the other half of the molecule), one 4-(1H-pyrazol-3-yl)pyridine (4pp) molecule and one water molecule. In the crystal, two 4pp and one terephthalic acid molecules form a linear three-molecule unit as a result of O—H...N hydrogen bonds. These units are further assembled into a three-dimensional network by two types of hydrogen bonds, viz. O—H...O and N—H...O.


Author(s):  
Aleksej Jochim ◽  
Inke Jess ◽  
Christian Näther

The asymmetric unit of the title compound, [Fe(NCS)2(C6H4N2)2(H2O)2]·2C6H4N2, comprises one FeIIcation occupying an inversion centre as well as one thiocyanate anion, one water molecule and two 4-cyanopyridine molecules in general positions. The iron cations are coordinated by two N-bonded thiocyanate anions, two (pyridine)N-bonded 4-cyanopyridine ligands and two water molecules into discrete complexes. The resulting coordination polyhedron can be described as a slightly distorted octahedron. The discrete complexes are connected through centrosymmetric pairs of (pyridine)C—H...N(cyano) hydrogen bonds into chains that are further linked into a three-dimensional network through intermolecular O—H...N hydrogen bonds involving the 4-cyanopyridine solvent molecules.


2013 ◽  
Vol 69 (12) ◽  
pp. i83-i83 ◽  
Author(s):  
Mimoza Gjikaj ◽  
Peng Wu ◽  
Niels-Patrick Pook

The asymmetric unit of the title compound, [Ni(H2O)6](H2P2O6), contains one-half of the hexaaquanickel(II) cation and one-half of the dihydrogen hypodiphosphate anion. In the complex cation, the Ni2+atom is located on an inversion center and has an octahedral coordination sphere. The P—P distance in the centrosymmetric anion is 2.1853 (7) Å. In the crystal, discrete [Ni(H2O)6]2+cations and (H2P2O6)2−anions are stacked in columns parallel to thecaxis and are linked into a three-dimensional network by medium-strength O—H...O hydrogen bonds.


2013 ◽  
Vol 69 (12) ◽  
pp. m666-m666 ◽  
Author(s):  
Nizar Elfaleh ◽  
Hassen Chouaib ◽  
Slaheddine Kamoun

The asymmetric unit of the title compound, (C6H20N3)[BiCl6]·H2O, consists of a triprotonated bis(3-azaniumylpropyl)azanium cation, two halves of an octahedral [BiCl6]3−anion, each of the BiIIIatoms lying on an inversion centre, and a water molecule. In the crystal, the anions and water molecules are linked by O—H...Cl hydrogen bonds, forming chains running parallel to [0-11]. The anionic chains and the cations are further linked into a three-dimensional network by N—H...Cl and N—H...O hydrogen-bond interactions.


2012 ◽  
Vol 68 (6) ◽  
pp. o1714-o1715
Author(s):  
Fadila Berrah ◽  
Sofiane Bouacida ◽  
Ahlem Bouhraoua ◽  
Thierry Roisnel

The asymmetric unit of the title compound, C5H6N3O2 +·ClO4 −·2C5H5N3O2·H2O, comprises two symmetry-independent zwitterions, one cation, one perchlorate anion and one water molecule. In the crystal, the three different types of organic entities are linked by N—H...O and N—H...N hydrogen bonds, forming undulating sheets parallel to (1-10). These sheets are in turn connected by O—H...N and O—H...O hydrogen bonds involving perchlorate anions and water molecules, forming a three-dimensional network. Intramolecular N—H...O and weak intermolecular C—H...O hydrogen bonds are also present.


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