4.5 Article

Modulated Monoclinic Hydroxyapatite: The Effect of pH in the Microwave Assisted Method

期刊

MINERALS
卷 11, 期 3, 页码 -

出版社

MDPI
DOI: 10.3390/min11030314

关键词

hydroxyapatite; microwave hydrothermal synthesis; pH effect; hydroxyapatite nanorods; monoclinic phase

资金

  1. CONACYT [INFR-2015-251767]
  2. Doctorate program in Materials Sciences in the Universidad Autonoma del Estado de Hidalgo

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The study successfully synthesized nanosized rod-like monoclinic hydroxyapatite using an optimized microwave assisted hydrothermal method, which has not been previously reported.
Hydroxyapatite (HAp) is a natural hard tissue constituent widely used for bone and tooth replacement engineering. In the present work, synthetic HAp was obtained from calcium nitrate tetrahydrate (Ca(NO3)(2)center dot 4H(2)O) and ammonium phosphate dibasic (NH4)(2)HPO4 following an optimized microwave assisted hydrothermal method. The effect of pH was evaluated by the addition of ammonium hydroxide (NH4OH). Hence, different characterization techniques were used to determine its influence on the resulted HAp powders' size, shape, and crystallinity. By Transmission Electron Microscopy (TEM), it was observed that the reaction pH environment modifies the morphology of HAp, and a shape evolution, from sub-hedral particles at pH = 7 to rod-like nanosized HAp at pH = 10, was confirmed. Using the X-ray Diffraction (XRD) technique, the characteristic diffraction peaks of the monoclinic phase were identified. Even if the performed Rietveld analysis indicated the presence of both phases (hexagonal and monoclinic), monoclinic HAp prevails in 95% with an average crystallite size of about 23 nm. The infrared spectra (FTIR) showed absorption bands at 3468 cm(-1) and 630 cm(-1) associated with OH- of hydroxyapatite, and bands at 584 cm(-1), 960 cm(-1), and 1090 cm(-1) that correspond to the PO43- and CO32- characteristic groups. In summary, this work contributes to obtaining nanosized rod-like monoclinic HAp by a simple and soft method that has not been previously reported.

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