Controlled Rate Thermal Analysis (CRTA) as a Fast and Effective Method for the Development of Ceramic Powders of Synthetic Hydroxyapatite at Low Temperatures

被引:2
|
作者
Peon, Eduardo [1 ]
Fuentes, Gaston [1 ]
Galvan, Juan C.
机构
[1] Univ Havana, Biomat Ctr, Dept Ceram & Metall Biomat, Ave Univ S-N, Havana 10400, Cuba
来源
关键词
hdroxyapatite; bioceramics; thermal analysis; controlled rate thermal analysis; specific surface; pore size; KINETIC-ANALYSIS; BARIUM HYDROXYAPATITES; CALCIUM; BEHAVIOR; DECOMPOSITION; DIFFRACTION; STABILITY; STRONTIUM; APATITES;
D O I
10.33263/BRIAC113.1103111041
中图分类号
O69 [应用化学];
学科分类号
081704 ;
摘要
One of the main limitations for applying synthetic hydroxyapatite as a filler in cement and other formulations in orthopedic surgery is its morphology. The present work shows the obtaining of synthetic hydroxyapatite powders at low temperatures such as 300 and 850 degrees C using the Controlled Rate Thermal Analysis (CRTA) technique. The powders obtained were characterized by IR spectroscopy and X-ray diffraction, showing that the phase formed corresponds to crystalline hydroxyapatite. The specific surface area values determined are between 17 and 66 m(2)/g with a pore size between 50-300 A. The transformation of phases in the synthetic hydroxyapatite is studied by Dynamic Thermogravimetric Analysis and CRTA techniques, allowing the kinetic calculations of the transformation using two methods of data processing, determining the activation energy (Ea), preexponential factor (A), and model kinetic most likely in each stage. The results show the effectiveness and usefulness of the CRTA technique for preparing synthetic hydroxyapatite powders with different specific surface areas, which makes this technique attractive for medical purposes.
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页码:11031 / 11041
页数:11
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