Crystal Structure of (Fluorosulfonyl)fluoroacetic Acid:  A Novel Four-Center Hydrogen-Bond System Involving a C−H Donor

1996 ◽  
Vol 35 (7) ◽  
pp. 1912-1914 ◽  
Author(s):  
Dale A. Braden ◽  
Timothy J. R. Weakley
2012 ◽  
Vol 68 (6) ◽  
pp. m820-m821 ◽  
Author(s):  
Małgorzata Sikorska ◽  
Maria Gazda ◽  
Jaroslaw Chojnacki

The title compound {systematic name: bis(μ2-dihydrogen 4-azaniumyl-1-hydroxybutane-1,1-diphosphonato)bis[aqua(dihydrogen 4-azaniumyl-1-hydroxybutane-1,1-diphosphonato)nickel(II)] dihydrate}, [Ni2(C4H12NO7P2)4(H2O)2]·2H2O, was synthesiized under hydrothermal conditions. Its structure is isotypic with the CoII analogue. The crystal structure is built up from centrosymmetric dinuclear complex molecules and the structure is reinforced by a net of intermolecular O—H...O and N—H...O hydrogen bonds. One water molecule is bound to the NiII atom in the octahedral coordination sphere, while the second is part of the intermolecular hydrogen-bond system.


2002 ◽  
Vol 57 (12) ◽  
pp. 1337-1345 ◽  
Author(s):  
H. Haeuseler ◽  
M. Botova

By crystallisation from a strongly acidic aqueous solution calciumtetrahydrogen-hexaoxo-diperiodatetetrahydrate CaH4I2O10 ∙ 4 H2O has been obtained. In the structure of this compound (S.G. C2/c, Nr. 15), Z = 4, a = 1986,6(4), b = 564,2(1), c = 1149,4(20) pm, β = 120,62(3)°) centrosymmetric H4I2O102− anions in the form of edge-sharing octahedra form layers via hydrogen bonds originating from the acidic, trans-configurated OH groups of the anions. IR and Raman spectra are analysed with respect to the hydrogen bond system and the internal vibrations of the periodate anion. The dehydration of the compound takes place via Ca(IO4)2 ∙ 5 H2O and Ca(IO4)2 ∙2H2O leading at 143°C to the anhydrous metaperiodate Ca(IO4)2 which decomposes above 248°C to Ca(IO3)2.


1981 ◽  
Vol 59 (4) ◽  
pp. 658-662 ◽  
Author(s):  
Maria Przybylska ◽  
Dennis G. Garratt

1-Chloromethyl-3-endo-(2′,4′-dinitrophenylthio)tricyclo[2.2.1.02,6]heptane, C14H13ClN2O4S, crystallizes in space group P21/a with unit cell dimensions a = 12.785(2), b = 10.653(1), c = 11.061(1) Å, β = 101.54(l)° Z = 4.The structure was solved from Patterson and Fourier maps. The parameters were refined by block-diagonal least-squares to a final R = 0.038 for 2063 observed reflections. The structural data provide unequivocal proof for our earlier ascertainment of configurational-specific exo attack upon the endocyclic double bond of 2-methylenebicyclo[2.2.1]hept-5-ene with homoallylic participation.The molecule is characterized by the presence of an interaction between oxygen of the 2-nitro group and a sulphur atom, and of a weak bifurcated hydrogen bond system involving [Formula: see text] bonds.


2015 ◽  
Vol 79 (1) ◽  
pp. 11-24 ◽  
Author(s):  
G. Ventruti ◽  
G. Della Ventura ◽  
R. Orlando ◽  
F. Scordari

AbstractThe crystal structure of hohmannite, Fe3+2[O(SO4)2]·8H2O, was studied by means of single-crystal X-ray diffraction (XRD) and vibrational spectroscopy. The previous structural model was confirmed, though new diffraction data allowed the hydrogen-bond system to be described in greater and more accurate detail.Ab initiocalculations were performed in order to determine accurate H positions and to support the experimental model obtained from XRD data. Infrared and Raman spectra are presented for the first time for this compound and comments are made on the basis of the crystal structure and the known literature for sulfate minerals.


2018 ◽  
Vol 74 (4) ◽  
pp. 406-410 ◽  
Author(s):  
Mark Strey ◽  
Peter G. Jones

During our studies of urea and thiourea adducts, we noticed that no adducts with unsubstituted pyridine had been structurally investigated. The 1:1 adduct of pyridine and urea, C5H5N·CH4N2O, crystallizes in the P21/c space group with Z = 4. The structure is of a standard type for urea adducts, whereby the urea molecules form a ribbon, parallel to the a axis, consisting of linked R 2 2(8) rings, and the pyridine molecules are attached to the periphery of the ribbon by bifurcated (N—H...)2N hydrogen bonds. The 1:1 adduct of pyridine and thiourea, C5H5N·CH4N2S, crystallizes in the P21/n space group, with Z = 32 (Z′ = 8). The structure displays similar ribbons to those of the urea adduct. There are two independent ribbons parallel to the b axis at z ≃ 0 and 1 \over 2, and three at z ≃ 1 \over 4 and 3 \over 4; the latter are crosslinked to form a layer structure by additional long N—H...S interactions, which each formally replace one branch of a bifurcated hydrogen-bond system.


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