Abstract
X-ray diffraction measurements performed on aerodynamically levitated CaSiO3 droplets have been interpreted using a structurally heterogeneous liquid-state model. When cooled, the high-temperature liquid shows evidence of the polymerization of edge shared Ca octahedra. Diffraction isosbestic points are used to characterize the polymerization process in the pair-distribution function. This behavior is linear in the high-temperature melt but exhibits rapid growth just above the glass transition temperature around 1.2 Tg. The heterogeneous liquid interpretation is supported by molecular-dynamics simulations which show the CaSiO3 glass has more edge-shared polyhedra and fewer corner shared polyhedra than the liquid model. © 2010 The American Physical Society.
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CITATION STYLE
Benmore, C. J., Weber, J. K. R., Wilding, M. C., Du, J., & Parise, J. B. (2010). Temperature-dependent structural heterogeneity in calcium silicate liquids. Physical Review B - Condensed Matter and Materials Physics, 82(22). https://doi.org/10.1103/PhysRevB.82.224202
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