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Supporting information for the article: Lukić, M.J., Kuzmanović, M., Sezen, M., Bakan, F., Egelja, A., Veselinović, L., 2018. Inert atmosphere processing of hydroxyapatite in the presence of lithium iron phosphate. Journal of the European Ceramic Society 38, 2120–2133. https://doi.org/10.1016/j.jeurceramsoc.2017.12.023
(Journal of the European Ceramic Society, 2018)
Crystallographic Information for the article Veselinović, L., Karanović, L., Stojanović, Z., Bračko, I., Marković, S., Ignjatović, N., Uskoković, D., 2010. Crystal structure of cobalt-substituted calcium hydroxyapatite nanopowders prepared by hydrothermal processing. Journal of Applied Crystallography 43, 320–327
(Journal of Applied Crystallography, 2010)
Crystallographic Information File contains datablocks HAp, Co5HAp, Co10HAp, Co15HAp, Co20HAp
Rietveld powder data file for the article Veselinović, L., Karanović, L., Stojanović, Z., Bračko, I., Marković, S., Ignjatović, N., Uskoković, D., 2010. Crystal structure of cobalt-substituted calcium hydroxyapatite nanopowders prepared by hydrothermal processing. Journal of Applied Crystallography 43, 320–327
(Journal of Applied Crystallography, 2010)
Rietveld powder data file contains datablocks HAp, Co5HAp, Co10HAp, Co15HAp, Co20HAp
Electronic Supplementary Information associated with the article: Degli Esposti Lorenzo, Marković Smilja, Ignjatović Nenad, Panseri Silvia, Montesi Monica, Adamiano Alessio, Fosca Marco, Rau Julietta V., Uskoković Vuk, Iafisco Michele, "Thermal crystallization of amorphous calcium phosphate combined with citrate and fluoride doping: a novel route to produce hydroxyapatite bioceramics." Journal of Materials Chemistry B, 9, no. 24 (2021):4832-4845, https://doi.org/10.1039/D1TB00601K
(Royal Society of Chemistry, 2021)
Figure S1. The shift in the crystallization peak for (A) Cit-ACP-1 and (B) Cit-FACP-1 to higher temperatures in direct proportion with the heating rate; Figure S2. TGA curves of calcined Cit-ACP-4, Cit-ACP-2, and Cit-ACP-1; ...