Abstract
Pure and A13+ doped nano-hydroxyapatites (HA) were synthesized by a precipitation method to investigate their densification and thermal stability after the air sintering at 1100°C and 1300°C. Second phases were formed after increasing the Al3+ content from 2.5% to 7.5% in HA and increasing the sintering temperature from 1100°C to 1300°C. Al 3+ addition into HA resulted in change in the hexagonal lattice parameters from the pure HA. When the sintering temperature was increased from 1100°C to 1300°C, densification was improved, which was verified by SEM micrographs. Al3+ addition resulted in smaller grain size after the sintering at 1300°C.
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Evis, Z. (2006). Al3+ doped nano-hydroxyapatites and their sintering characteristics. Journal of the Ceramic Society of Japan, 114(1335), 1001–1004. https://doi.org/10.2109/jcersj.114.1001
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