KINETICS OF THE GRAPHITE-DIAMOND TRANSFORMATION IN AQUEOUS FLUID DETERMINED BY IN-SITU X-RAY DIFFRACTIONS AT HIGH PRESSURES AND TEMPERATURES

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The graphite-diamond transformation was investigated by in situ time-resolved X-ray diffraction experiments using aqueous fluid containing dissolved MgO as the diamond-forming catalyst under conditions of 6.6–8.9 GPa and 1400–1835 C. The transformed volume fractions of diamond as a function of time under various pressure-temperature conditions were obtained and analyzed using the JMAK rate equation. Variations in the nucleation and growth processes during diamond formation as a function of pressure and temperature were clarified.

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Physics and Chemistry of Minerals, 2004, 31, 4, 261-268

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