Elaboration biphasic calcium phosphate nanostructured powders

Nanostructured calcium phosphate and biphasic calcium phosphates have been studied and stand out as biomaterials for bone regeneration. This is due to the fact that thesebiomaterials present bioactivity and morphological, chemical and crystallographic similarities to the bone apatite. The aim of the...

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Main Authors: G.M.L. Dalmônico, D.F. Silva, P.F. Franczak, N.H.A. Camargo, M.A. Rodríguez
Format: Article
Language:English
Published: Elsevier 2015-01-01
Series:Boletín de la Sociedad Española de Cerámica y Vidrio
Subjects:
Online Access:http://www.sciencedirect.com/science/article/pii/S0366317515000072
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spelling doaj-e5837e73a8154a1e818b0360ba91293b2020-11-24T21:22:56ZengElsevierBoletín de la Sociedad Española de Cerámica y Vidrio0366-31752015-01-01541374310.1016/j.bsecv.2015.02.006Elaboration biphasic calcium phosphate nanostructured powdersG.M.L. Dalmônico0D.F. Silva1P.F. Franczak2N.H.A. Camargo3M.A. Rodríguez4Program Post-Graduation in Science and Materials Engineering, Santa Catarina State University (SC), Joinville, BrazilProgram Post-Graduation in Science and Materials Engineering, Santa Catarina State University (SC), Joinville, BrazilProgram Post-Graduation in Science and Materials Engineering, Santa Catarina State University (SC), Joinville, BrazilProgram Post-Graduation in Science and Materials Engineering, Santa Catarina State University (SC), Joinville, BrazilInstituto de Cerámica y Vidrio (Consejo Superior de Investigaciones Científicas), Madrid, SpainNanostructured calcium phosphate and biphasic calcium phosphates have been studied and stand out as biomaterials for bone regeneration. This is due to the fact that thesebiomaterials present bioactivity and morphological, chemical and crystallographic similarities to the bone apatite. The aim of the present work has been the synthesis and characterization of two calcium phosphates with Ca/P=1.5 e 1.67 as molar ratio. These were synthesized through the chemical wet process. After synthesis, the hydrated calcium phosphate powders were subsequently calcined at temperatures of 900 °C/2 h providing b-calcium phosphate (b-TCP) and hydroxyapatite (HA) powders. These powders were used to elaborate the biphasic powders in the wt.% ratios HA/b-TCP as follows: 80/20, 20/80, 70/30 and 30/70. The method used for the elaboration of the b-tricalcium phosphate nanostructured powder, hydroxyapatite and biphasic compositions was the attrition milling. The nanostructured powders obtained were characterized by the scanning electron microscopy technique, X-ray diffractometry. Infrared spectroscopy and Specific surface using BET model.http://www.sciencedirect.com/science/article/pii/S0366317515000072SynthesisCalcium PhosphateHydroxyapatiteBiphasicBiomaterial
collection DOAJ
language English
format Article
sources DOAJ
author G.M.L. Dalmônico
D.F. Silva
P.F. Franczak
N.H.A. Camargo
M.A. Rodríguez
spellingShingle G.M.L. Dalmônico
D.F. Silva
P.F. Franczak
N.H.A. Camargo
M.A. Rodríguez
Elaboration biphasic calcium phosphate nanostructured powders
Boletín de la Sociedad Española de Cerámica y Vidrio
Synthesis
Calcium Phosphate
Hydroxyapatite
Biphasic
Biomaterial
author_facet G.M.L. Dalmônico
D.F. Silva
P.F. Franczak
N.H.A. Camargo
M.A. Rodríguez
author_sort G.M.L. Dalmônico
title Elaboration biphasic calcium phosphate nanostructured powders
title_short Elaboration biphasic calcium phosphate nanostructured powders
title_full Elaboration biphasic calcium phosphate nanostructured powders
title_fullStr Elaboration biphasic calcium phosphate nanostructured powders
title_full_unstemmed Elaboration biphasic calcium phosphate nanostructured powders
title_sort elaboration biphasic calcium phosphate nanostructured powders
publisher Elsevier
series Boletín de la Sociedad Española de Cerámica y Vidrio
issn 0366-3175
publishDate 2015-01-01
description Nanostructured calcium phosphate and biphasic calcium phosphates have been studied and stand out as biomaterials for bone regeneration. This is due to the fact that thesebiomaterials present bioactivity and morphological, chemical and crystallographic similarities to the bone apatite. The aim of the present work has been the synthesis and characterization of two calcium phosphates with Ca/P=1.5 e 1.67 as molar ratio. These were synthesized through the chemical wet process. After synthesis, the hydrated calcium phosphate powders were subsequently calcined at temperatures of 900 °C/2 h providing b-calcium phosphate (b-TCP) and hydroxyapatite (HA) powders. These powders were used to elaborate the biphasic powders in the wt.% ratios HA/b-TCP as follows: 80/20, 20/80, 70/30 and 30/70. The method used for the elaboration of the b-tricalcium phosphate nanostructured powder, hydroxyapatite and biphasic compositions was the attrition milling. The nanostructured powders obtained were characterized by the scanning electron microscopy technique, X-ray diffractometry. Infrared spectroscopy and Specific surface using BET model.
topic Synthesis
Calcium Phosphate
Hydroxyapatite
Biphasic
Biomaterial
url http://www.sciencedirect.com/science/article/pii/S0366317515000072
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