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93Nb NMR chemical shift scale for niobia systems. | LitMetric

93Nb NMR chemical shift scale for niobia systems.

Solid State Nucl Magn Reson

Boreskov Institute of Catalysis, SB RAS, Prosp. Lavrentieva 5, 630090 Novosibirsk, Russian Federation.

Published: September 2005

AI Article Synopsis

  • Researchers measured 93Nb solid-state NMR spectra of various niobates, identifying the chemical shielding and quadrupole tensor parameters using advanced NMR techniques.
  • The study established a new 93Nb NMR chemical shift scale linked to the coordination number of Nb, with specific ppm ranges for four, five, six, seven, and eight-coordinated Nb sites.
  • Additionally, a correlation was suggested between the isotropic chemical shift and the ionic character of NbOx-MOy associations, with the quadrupole coupling constant varying significantly based on the local symmetry of Nb sites.

Article Abstract

93Nb solid-state NMR spectra of a series of inorganic niobates with Nb in different oxygen coordination environments were measured. For all studied compounds the chemical shielding and quadrupole tensor parameters were determined using conventional and ultrahigh field NMR facilities, ultrahigh speed MAS, DQ STMAS, solid-echo and computer modeling. It has been demonstrated that the 93Nb isotropic chemical shift is sensitive to the coordination number of Nb sites. For the first time the 93Nb NMR chemical shift scale for NbOx polyhedra in solid materials has been proposed: for four-coordinated Nb sites, the isotropic shifts occur from -650 to -950 ppm; five-coordinated Nb sites have the isotropic shifts in the range of -900 to -980 ppm; for six-coordinated Nb sites the isotropic shifts vary from -900 to -1360 ppm; the shifts from -1200 to -1600 ppm are typical for seven-coordinated Nb sites; for eight-coordinated Nb sites the shifts are higher than -1400 ppm. The possible correlation between the value of the isotropic chemical shift and the ionic character of the NbOx-MOy polyhedra association has been suggested. The magnitude of the 93Nb quadrupole coupling constant depends on the local symmetry of Nb sites and may vary from hundreds of kHz to hundreds of MHz.

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Source
http://dx.doi.org/10.1016/j.ssnmr.2005.09.003DOI Listing

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