MAS NMR spectra of quadrupolar nuclei in disordered solids: the Czjzek model.
暂无分享,去创建一个
[1] D. Massiot,et al. 27Al NMR study of the structure of lanthanum- and yttrium-based aluminosilicate glasses and melts. , 2007, The journal of physical chemistry. B.
[2] T. Charpentier,et al. Contribution of 43Ca MAS NMR for probing the structural configuration of calcium in glass , 2007 .
[3] A. Hill,et al. Integrated study of the calcination cycle from gibbsite to corundum , 2007 .
[4] P. Jeglič,et al. Orientation-dependent NMR study of the giant-unit-cell intermetallicsβ−Al3Mg2, Bergman-phaseMg32(Al,Zn)49, andξ′−Al74Pd22Mn4 , 2007 .
[5] J. Sachleben. Bayesian and information theory analysis of MAS sideband patterns in spin 1/2 systems. , 2006, Journal of magnetic resonance.
[6] D. Neuville,et al. Al coordination and speciation in calcium aluminosilicate glasses: Effects of composition determined by 27Al MQ-MAS NMR and Raman spectroscopy , 2006 .
[7] H. Eckert,et al. Short- and medium-range order in sodium aluminophosphate glasses: new insights from high-resolution dipolar solid-state NMR spectroscopy. , 2006, The journal of physical chemistry. B.
[8] M. Hartman,et al. Investigation of the structure of ettringite by time-of-flight neutron powder diffraction techniques , 2006 .
[9] M. Delgado,et al. Synthesis and Characterization of Spinel‐Type Gallia‐Alumina Solid Solutions , 2005 .
[10] R. Gautier,et al. 95Mo magic angle spinning NMR at high field: improved measurements and structural analysis of the quadrupole interaction in monomolybdates and isopolymolybdates. , 2005, The journal of physical chemistry. B.
[11] K. Mueller,et al. Electric field gradient distributions about strontium nuclei in cubic and octahedrally symmetric crystal systems , 2005 .
[12] P. Grandinetti,et al. Calculation of bridging oxygen 17O quadrupolar coupling parameters in alkali silicates: a combined ab initio investigation. , 2005, Solid state nuclear magnetic resonance.
[13] D. Neuville,et al. Al environment in tectosilicate and peraluminous glasses: A 27Al MQ-MAS NMR, Raman, and XANES investigation , 2004 .
[14] K. Scrivener,et al. Quantitative study of Portland cement hydration by X-ray diffraction/rietveld analysis and independent methods , 2004 .
[15] Francesco Mauri,et al. First-Principles Calculation of 17O, 29Si, and 23Na NMR Spectra of Sodium Silicate Crystals and Glasses , 2004 .
[16] J. Eckert,et al. Effect of preparation conditions on the short-range order in Zr-based bulk glass-forming alloys , 2003 .
[17] Donghua H Zhou,et al. 93Nbmagic angle spinning NMR study of perovskite relaxor ferroelectrics(1−x)Pb(Mg1/3Nb2/3)O3−xPb(Sc1/2Nb1/2)O3 , 2002 .
[18] Gonzalo Gutiérrez,et al. Molecular dynamics study of structural properties of amorphous Al 2 O 3 , 2002 .
[19] G. Hoatson,et al. Modelling one‐ and two‐dimensional solid‐state NMR spectra , 2002 .
[20] G. Gutiérrez,et al. Theoretical structure determination of gamma-Al2O3 , 2001 .
[21] J. Greneche. Local structural order in disordered systems investigated by Mössbauer spectrometry , 2001 .
[22] B. Boulard,et al. Nuclear magnetic resonance quadrupolar parameters and short range order in disordered ionic fluorides , 2000 .
[23] C. Legein,et al. From crystalline to glassy gallium fluoride materials: an NMR study of 69Ga and 71Ga quadrupolar nuclei. , 1999, Solid state nuclear magnetic resonance.
[24] R. Brand,et al. General models for the distributions of electric field gradients in disordered solids , 1998 .
[25] U. Sternberg,et al. Distribution of principal values of the 31P NMR chemical shift tensor in phosphate glasses. , 1998, Solid state nuclear magnetic resonance.
[26] G. Kunath-Fandrei,et al. 27Al and 29Si MAS NMR investigations of cordierite glass, μ- and α-cordierite , 1997 .
[27] J. Greneche,et al. Electron paramagnetic resonance and Mössbauer effect studies in iron-doped 57Fe isotope enriched phosphate glasses , 1996 .
[28] Charles Jacoboni,et al. The local field distribution of in transition metal fluoride glasses investigated by electron paramagnetic resonance , 1996 .
[29] K. Schwarz,et al. Ab initio calculation of electric-field-gradient tensors of forsterite , 1996 .
[30] J. S. Hall,et al. Quantification of Aluminum Coordinations in Amorphous Aluminas by Combined Central and Satellite Transition Magic Angle Spinning NMR Spectroscopy , 1995 .
[31] B. Boulard,et al. Short-range order quantification in transition metal fluoride glasses (TMFG) through EPR spectra simulation , 1995 .
[32] C. Legein,et al. Electron paramagnetic resonance determination of the local field distribution acting on Cr3+ and Fe3+ in transition metal fluoride glasses (TMFG) , 1995 .
[33] J. Fripiat,et al. Lewis Acid Sites and Surface Aluminum in Aluminas and Zeolites: A High-Resolution NMR Study , 1994 .
[34] R. Slade,et al. High field MAS NMR, with simulations of the effects of disorder on lineshape, applied to thermal transformations of alumina hydrates , 1993 .
[35] F. Taulelle,et al. Aluminium‐27 MAS NMR of Al2Ge2O7 and LaAlGe2O7: Two pentacoordinated aluminium environments , 1990 .
[36] A. Samoson. Satellite transition high-resolution NMR of quadrupolar nuclei in powders , 1985 .
[37] S. Nagel. Cluster calculation of electronic structure and quadrupole interaction in α-Al2O3 , 1985 .
[38] D. Gillespie,et al. A Theorem for Physicists in the Theory of Random Variables. Addenda. , 1983 .
[39] J. Coey,et al. Atomic coordination and the distribution of electric field gradients in amorphous solids , 1981 .
[40] H. J. Jakobsen,et al. A new aluminium-hydrate species in hydrated Portland cements characterized by 27Al and 29Si MAS NMR spectroscopy , 2006 .
[41] G. Kunath-Fandrei,et al. 27Al and 29Si MAS NMR investigations of cordierite glass, mu- and alpha-cordierite. , 1997, Solid state nuclear magnetic resonance.
[42] C Jacoboni,et al. The local field distribution of in transition metal fluoride glasses investigated by electron paramagnetic resonance , 1996 .