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The crystal structure determinations and refinements of K2S2O7, KNaS2O7 and Na2S2O7 from X-ray powder and single crystal diffraction data
Authors:Kenny Ståhl  Tonci Balic-Zunic  K Michael Eriksen  Rasmus Fehrmann
Institution:a Department of Chemistry and ICAT, Technical University of Denmark, DK-2800 Kongis Lyngby, Denmark
b Geolocical Institute, University of Copenhagen, Ostervoldgade 10, DK-1350 Copenhagen K, Denmark
c UMR-CNRS, TECSEN, Avenue Escadrille Normandie Niemen, Faculté des Sciences, St Jérôme 13397, Marseille Cedex 20, France
Abstract:The crystal structures of K2S2O7, KNaS2O7 and Na2S2O7 have been solved and/or refined from X-ray synchrotron powder diffraction data and conventional single-crystal data. K2S2O7: From powder diffraction data, monoclinic C2/c, Z=4, a=12.3653(2), b=7.3122(1), View the MathML source, β=93.0792(7)°, RBragg=0.096. KNaS2O7: From powder diffraction data; triclinic View the MathML source, Z=2, a=5.90476(9), b=7.2008(1), View the MathML source, α=101.7074(9), β=90.6960(7), γ=94.2403(9)°, RBragg=0.075. Na2S2O7: From single-crystal data; triclinic View the MathML source, Z=2, a=6.7702(9), b=6.7975(10), View the MathML source, α=116.779(2), β=96.089(3), γ=84.000(3)°, RF=0.033. The disulphate anions are essentially eclipsed. All three structures can be described as dichromate-like, where the alkali cations coordinate oxygens of the isolated disulphate groups in three-dimensional networks. The K-O and Na-O coordinations were determined from electron density topology and coordination geometry. The three structures have a cation-disulphate chain in common. In K2S2O7 and Na2S2O7 the neighbouring chains are antiparallel, while in KNaS2O7 the chains are parallel. The differences between the K2S2O7 and Na2S2O7 structures, with double-, respectively single-sided chain connections and straight, respectively, corrugated structural layers can be understood in terms of the differences in size and coordinating ability of the cations.
Keywords:Synchrotron powder diffraction  Crystal structure determination  K2S2O7  KNaS2O7  Na2S2O7
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