Search results for "Hydrogen"

showing 10 items of 4254 documents

Host–Guest Chemistry: Oxoanion Recognition Based on Combined Charge‐Assisted C−H or Halogen‐Bonding Interactions and Anion⋅⋅⋅Anion Interactions Media…

2016

Several bis-triazolium-based receptors have been synthesized and their anion-recognition capabilities have been studied. The central chiral 1,1'-bi-2-naphthol (BINOL) core features either two aryl or ferrocenyl end-capped side arms with central halogen- or hydrogen-bonding triazolium receptors. NMR spectroscopic data indicate the simultaneous occurrence of several charge-assisted aliphatic and heteroaromatic C-H noncovalent interactions and combinations of C-H hydrogen and halogen bonding. The receptors are able to selectively interact with HP2 O7 (3-) , H2 PO4 (-) , and SO4 (2-) anions, and the value of the association constant follows the sequence: HP2 O7 (3-) >SO4 (2-) >H2 PO4 (-) . The …

chemistry.chemical_classificationHalogen bond010405 organic chemistryChemistryHydrogen bondStereochemistryArylOrganic ChemistryGeneral Chemistry010402 general chemistryElectrochemistry01 natural sciencesCatalysis0104 chemical sciencesIonCrystallographychemistry.chemical_compoundHalogenNon-covalent interactionsHost–guest chemistryChemistry – A European Journal
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Iodine Clathrated: A Solid‐State Analogue of the Iodine–Starch Complex

2019

Co-crystallizing iodine with a simple dicationic salt (1,8-diammoniumoctane chloride) results in the clathration of the iodine (I2 ) molecules inside trigonal and hexagonal helical channels of the crystal lattice with 72 wt % overall I2 loading. The I2 inside the bigger trigonal channel forms a I-I⋅⋅⋅I-I⋅⋅⋅I-I halogen-bonded infinite helical chain, while the I2 in the smaller hexagonal channel is disordered. In both channels the I2 interaction with the channel wall happens through I-I⋅⋅⋅Cl- halogen bonds. The helical channels in the crystal lattice are constructed via the strong charge-assisted H2 N+ H⋅⋅⋅Cl- hydrogen bonds between the dications and the chloride anions. The structure shows a…

chemistry.chemical_classificationHalogen bond010405 organic chemistryHydrogen bondOrganic ChemistrySupramolecular chemistrySalt (chemistry)General ChemistryCrystal structure010402 general chemistry01 natural sciencesChlorideCatalysis0104 chemical sciencesCrystallographychemistryHalogenmedicineMoleculemedicine.drugChemistry – A European Journal
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Counterion influence on the N–I–N halogen bond

2015

A detailed investigation of the influence of counterions on the [N–I–N]+ halogen bond in solution, in the solid state and in silico is presented. Translational diffusion coefficients indicate close attachment of counterions to the cationic, three-center halogen bond in dichloromethane solution. Isotopic perturbation of equilibrium NMR studies performed on isotopologue mixtures of regioselectively deuterated and nondeuterated analogues of the model system showed that the counterion is incapable of altering the symmetry of the [N–I–N]+ halogen bond. This symmetry remains even in the presence of an unfavorable geometric restraint. A high preference for the symmetric geometry was found also in …

chemistry.chemical_classificationHalogen bond010405 organic chemistryHydrogen bondcounterion; halogen bond; single crystal X-ray diffraction; DFT computationInorganic chemistryGeneral ChemistryNuclear magnetic resonance spectroscopy010402 general chemistry01 natural sciencesN–I–N halogen bond0104 chemical sciencesCrystallographyChemical bondchemistryTransition metalCounterionta116Single crystalBasis setChemical Science
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Glucose 6-phosphate dehydrogenase Palermo R257M: a novel variant associated with chronic non-spherocytic haemolytic anaemia

2010

chemistry.chemical_classificationHemolytic anemiahaemolytic anaemianew DNA mutationEnzyme defectHematologyhereditary genetic defectBiologymedicine.diseaseMicrobiologychemistry.chemical_compoundSettore MED/38 - Pediatria Generale E SpecialisticaEnzymeBiochemistrychemistryenzyme defectmedicineChronic non-spherocytic haemolytic anaemiaGlucose-6-phosphate dehydrogenaseSpherocytic anemiaG6PDBritish Journal of Haematology
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Der cytochemische Nachweis von Prolin-Dehydrogenasen, Acetaldehyd-Dehydrogenasen und Dihydrolipons�ure-Dehydrogenase in den Zellen vonSaccharomyces c…

1967

Using the tetrazolium salt Nitro-BT, the following dehydrogenases can be demonstrated cytochemically in the cells ofSaccharomyces cerevisiae: (1)Proline dehydrogenase activity: it cannot be decided whether the formazan production is a result of L-proline: NAD(P)-2-oxidoreductase (E.C. 1.5.1.1) or of L-proline:NAD(P)-5-oxidoreductase(E.C. 1.5.1.2); (2)Aldehyde dehydrogenase activity: using the coenzymes NAD and NADP and the activators KCl and MgCl2, different reaction pictures are obtained which led to the conclusion that aldehyde: NADP oxidoreductase (E.C. 1.2.1.4) and aldehyde: NAD(P) oxidoreductase (E.C. 1.2.1 5) can be demonstrated seperately; (3)Dihydrolipoic dehydrogenase (E.C. 1.6.4.3…

chemistry.chemical_classificationHistologybiologyChemistryAldehyde dehydrogenaseDehydrogenaseCell BiologyMolecular biologyCofactorMedical Laboratory Technologychemistry.chemical_compoundEnzymeBiochemistryOxidoreductasebiology.proteinProline dehydrogenase activityNAD+ kinaseFormazanMolecular BiologyHistochemie
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Syntheses, structures and magnetic properties of cyano-bridged one-dimensional Ln3+–Fe3+ (Ln = La, Dy, Ho and Yb) coordination polymers

2019

Four new heterometallic one-dimensional coordination polymers with formulae trans-[La(o-phen)3(H2O)(μ-CN)2Fe(CN)4]·7H2O (1) and trans-[Ln(H2O)2(phen)2(μ-CN)2Fe(CN)4]·nH2O [Ln/n = Dy/8 (2), Ho/7 (3) and Yb/7 (4), (o-phen = 1,10-phenanthroline)] have been synthesized by reacting Ln(NO3)3·xH2O with K3[Fe(CN)6] and 1,10-phenanthroline. The structures of 1–4 have been established by single crystal X-ray diffraction. Polymer 1 presents a chain structure with three o-phen ligands coordinated to La3+ and [Fe(CN)6]3− complexes connecting them through two trans CN− ligands to form a linear chain. Compounds 2–4 are solvates and contain Ln3+ ions coordinated to two o-phen ligands and also bridged by [F…

chemistry.chemical_classificationHydrogen bond02 engineering and technologyGeneral ChemistryPolymer010402 general chemistry021001 nanoscience & nanotechnology01 natural sciencesMagnetic susceptibilityCatalysis0104 chemical sciencesIonCrystallographychemistryMaterials ChemistryCluster (physics)MoleculeAntiferromagnetism0210 nano-technologySingle crystalNew Journal of Chemistry
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2-(Mesitylmethylsulfanyl)pyridineN-oxide–18-crown-6 (2/1)

2008

In the title compound, 2C(15)H(17)NOS·C(12)H(24)O(6), the asymmetric unit consists of one N-oxide derivative and one-half of the 18-crown-6 ether, which lies on an inversion centre. In the crown ether, the O-C-C-O torsion angles indicate a gauche conformation of the ethyl-eneoxy units, while the C-O-C-C torsion angles indicate planarity of these segments. In the N-oxide unit, the dihedral angle between the pyridine and benzene rings is 85.88 (12)°. The crystal packing is stabilized by weak C-H⋯O hydrogen bonds and C-H⋯π inter-actions.

chemistry.chemical_classificationHydrogen bond18-Crown-6Pyridine-N-oxideEtherGeneral ChemistryDihedral angleCondensed Matter PhysicsBioinformaticsOrganic PapersPlanarity testingchemistry.chemical_compoundCrystallographychemistryPyridineGeneral Materials ScienceCrown etherActa Crystallographica Section E Structure Reports Online
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17O NMR study of isomeric monochloro- and monohydroxy-benzaldehydes and chlorinated salicylaldehydes

1991

The 17O NMR chemical shifts of isomeric monochloro- and monohydroxy-benzaldehydes and chlorinated salicylaldehydes were measured at 40°C for 0.25 M CDCI3 solutions. The 17O NMR chemical shift of the carbonyl oxygen of the compounds studied varies from 506 to 573 ppm measured from external D2O. The observed variation is probably mainly due to the intramolecular hydrogen bonding between the adjacent carbonyl and hydroxyl groups. The 17O NMR chemical shift range of the hydroxyl oxygen is from 80 to 98 ppm.

chemistry.chemical_classificationHydrogen bondChemical shiftchemistry.chemical_elementGeneral ChemistryNuclear magnetic resonance spectroscopyAldehydeMedicinal chemistryOxygenchemistryIntramolecular forceOrganic chemistryChemical solutionGeneral Materials ScienceMagnetic Resonance in Chemistry
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The geometry of the silver 1,1′-dibenzyl-2,2′-biimidazole complexes

2013

Abstract The argentophilic interactions and interactions of weakly coordinated nitrate and water with silver metal were studied by investigating the reaction of 1,1′-dibenzyl-2,2′-biimidazole (Bn2bim) with silver nitrate. Three new silver complexes [Ag4(Bn2bim)4(NO3)2]·4(CH3CH2OH)·2(NO3)·0.5(H2O) (1), [Ag4(Bn2bim)4(H2O)4]·4(NO3) (2) and [Ag4(Bn2bim)4(NO3)4]·6(CH2Cl2)·2(H2O) (3) were synthesized and characterized. Complexes 1-3 have rare tetranuclear twisted closed cyclic structure with four bridging biimidazoles and variable nitrate/water ratio. The interactions between the nitrate ligand and Ag as well as water ligands and Ag are considered to be weak due to the ease of exchanging them. Th…

chemistry.chemical_classificationHydrogen bondChemistryLigandInorganic chemistrylaw.inventionInorganic ChemistryMetalCrystallographychemistry.chemical_compoundSilver nitratelawvisual_artMaterials Chemistryvisual_art.visual_art_mediumMoleculeNon-covalent interactionsPhysical and Theoretical ChemistryCrystallizationta116DichloromethanePolyhedron
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Mononuclear coordination compounds based on a novel chelating triazole ligand: 1-vinyl-3-acetylamino-1,2,4-triazole

2002

The synthesis, X-ray structure, magnetic and spectroscopic properties of new Co(II), Ni(II) and Cu(II) complexes with 1-vinyl-3-acetylamino-1,2,4-triazole (vaat) are reported. The crystal structures of [Ni(vaat)2(H2O)2](NO3)2 and [Cu(vaat)2(H2O)2]Cl2 have been determined by X-ray diffraction. In these mononuclear complexes, the metal ion is surrounded by two water molecules in axial positions and two oxygen and two nitrogen (N4) atoms coming from two trans-oriented chelating vaat molecules. Anions are noncoordinated and are involved in a hydrogen bonding network. The complex cations of [Cu(vaat)2(H2O)2]Cl2 are aligned within chains. In the structure of [Ni(vaat)2(H2O)2](NO3)2 the nitrate an…

chemistry.chemical_classificationHydrogen bondChemistryLigandTriazole124-TriazoleCrystal structureCoordination complexInorganic ChemistryMetalCrystallographychemistry.chemical_compoundvisual_artMaterials Chemistryvisual_art.visual_art_mediumMoleculePhysical and Theoretical ChemistryPolyhedron
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