Mechanical Activation of Tetracalcium Phosphate

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Abstract

It was found that prolonged high-energy ball-milling of Hilgenstokite (tetracalcium phosphate, TTCP) resulted in a decrease in both particle and crystallite size, leading to a mechanical activation of the compound. This mechanically activated material demonstrated a high reactivity such that, in contrast to highly crystalline TTCP, a setting reaction with water to nanocrystalline hydroxyapatite (HA) and Ca(OH)2 could be achieved at 37°C. However, crystalline TTCP is practically unreactive at physiologic temperatures because of the formation of a thin HA layer on the particle surface preventing further reaction.

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Gbureck, U., Barralet, J. E., Hofmann, M., & Thull, R. (2004). Mechanical Activation of Tetracalcium Phosphate. Journal of the American Ceramic Society, 87(2), 311–313. https://doi.org/10.1111/j.1551-2916.2004.00311.x

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