64 research outputs found
Trends in Metal Oxide Stability for Nanorods, Nanotubes, and Surfaces
The formation energies of nanostructures play an important role in
determining their properties, including the catalytic activity. For the case of
15 different rutile and 8 different perovskite metal oxides, we find that the
density functional theory (DFT) calculated formation energies of (2,2)
nanorods, (3,3) nanotubes, and the (110) and (100) surfaces may be described
semi-quantitatively by the fraction of metal--oxygen bonds broken and the
bonding band centers in the bulk metal oxide
High temperature thermodynamic stabilities of RCoO3 (R=Nd, Sm, Eu, Gd or Dy) using solid oxide-electrolyte emf technique
Thermodynamic stabilities of Cs2CrO4(β), Cs3CrO4 and M2Cr2O7(l) (where M = Na, K or Cs) by solid electrolyte emf method
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