arXiv · 1110.1844
Anisotropic compression in the high pressure regime of pure and Cr-doped vanadium dioxide
Abstract
We present structural studies of V$_{1-x}$Cr$_x$O$_2$ (pure, 0.7% and 2.5% Cr doped) compounds at room temperature in a diamond anvil cell for pressures up to 20 GPa using synchrotron x-ray powder diffraction. All the samples studied show a persistence of the monoclinic $M_1$ symmetry between 4 and 12 GPa. Above 12 GPa, the monoclinic $M_1$ symmetry changes to isostructural $M_x$ phase (space group $P2_1/c$) with a significant anisotropy in lattice compression of the $b$-$c$ plane of the $M_{1}$ phase. This behavior can be reconciled invoking the pressure induced charge-delocalization.
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Matteo Mitrano, Beatrice Maroni, Carlo Marini, Michael Hanfland, Boby Joseph, Paolo Postorino, Lorenzo Malavasi. 2011-10-09. Anisotropic compression in the high pressure regime of pure and Cr-doped vanadium dioxide. https://doi.org/10.1103/physrevb.85.184108
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