.
DOI:
https://doi.org/10.17533/udea.rcm.19328Palavras-chave:
hidroxiapatita, precipitación química, citrato de calcioResumo
.
Downloads
Referências
Khaled R. M., “In vitro properties of nano-hydroxyapatite/chitosan biocomposites”, Ceramics International, Vol. 37, Nº 8, 3265–3271, 2011.
Peña J., “Room temperature synthesis of chitosan/apatite powders and coatings”, Journal of the European Ceramic Society, Vol. 26, Nº 16, 3631–3638, 2006.
LI J., “Surface characterization and biocompatibility of micro- and nano-hydroxyapatite/chitosan-gelatin network films”, Materials Science and Engineering C, Vol. 29, Nº 4, 1207–1215, 2009.
Yokoyama A., “Development of calcium phosphate cement using chitosan and citric acid for bone substitute materials”, Biomaterials, Vol. 23 Nº 4, 1091–1101, 2002.
Rapacz-Kmita A., “FTIR and XRD investigations on the thermal stability of hydroxyapatite during hot pressing and pressureless sintering processes”, Journal of Molecular Structure Vol. 744–747, 653–656, 2005.
Slosarczyk A., “FTIR and XRD evaluation of carbonated hydroxyapatite powders synthesized by wet methods”, Journal of Molecular Structure Vol. 744–747, 657–661, 2005.
U. Vijayalakshmi Natarajan, S. Rajeswari, Influence of calcium precursors on the morphology and crystallinity of sol-gel derived hydroxyapatite nanoparticles, Journal of Crystal Growth, Vol. 310, 4601-4611, 2008.
Downloads
Publicado
Como Citar
Edição
Seção
Licença
Copyright (c) 2014 Revista Colombiana de Materiales
![Creative Commons License](http://i.creativecommons.org/l/by-nc-sa/4.0/88x31.png)
Este trabalho está licenciado sob uma licença Creative Commons Attribution-NonCommercial-ShareAlike 4.0 International License.