Stabilization of HfB12 in Y1–xHfxB12 under Ambient Pressure
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文摘
Alloys of metal dodecaborides—YB<sub>12sub> with HfB<sub>12sub>—were prepared via arc-melting in order to stabilize the metastable HfB<sub>12sub> high-pressure phase under ambient pressure. Previously, HfB<sub>12sub> had been synthesized only under high-pressure (6.5 GPa). Powder X-ray diffraction (PXRD) and energy-dispersive X-ray spectroscopy (EDS) were used to confirm the purity and phase composition of the prepared samples. The solubility limit for HfB<sub>12sub> in Y<sub>1–xsub>Hf<sub>xsub>B<sub>12sub> (cubic UB<sub>12sub> structure type) was determined to be ∼35 at. % Hf by PXRD and EDS analysis. The value of the cubic unit cell parameter (a) changed from 7.505 Å (pure YB<sub>12sub>) to 7.454 Å across the solid solution range. Vickers hardness increased from 40.9 ± 1.6 GPa for pure YB<sub>12sub> to 45.0 ± 1.9 GPa under an applied load of 0.49 N for the Y<sub>1–xsub>Hf<sub>xsub>B<sub>12sub> solid solution composition with ∼28 at. % Hf, suggesting both solid solution hardening and extrinsic hardening due to the formation of secondary phases of hafnium.

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