2011Journal of the American Ceramic SocietyRequires access

Granules of Brushite and Octacalcium Phosphate from Marble

A. Cüneyt Taş

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Abstract

Brushite ( DCPD , dicalcium phosphate dihydrate, CaHPO 4 ·2H 2 O ) and octacalcium phosphate ( OCP , Ca 8 (HPO 4 ) 2 (PO 4 ) 4 ·5H 2 O ) granules with millimeter sizes were prepared by using marble (calcium carbonate) granules as the starting material. The method of this study simply comprised of soaking the marble granules in aqueous solutions containing phosphate and/or calcium ions at temperatures between 20° and 37°C. This process did not cause any size change between the initial marble and final brushite or octacalcium phosphate granules. Such DCPD and OCP granules could be useful in maxillofacial, dental, and orthopedic void/bone defect filling and grafting applications. Samples were characterized by X‐ray diffraction, inductively coupled plasma atomic emission spectroscopy, and scanning electron microscopy.

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What this paper is about

Brushite ( DCPD , dicalcium phosphate dihydrate, CaHPO 4 ·2H 2 O ) and octacalcium phosphate ( OCP , Ca 8 (HPO 4 ) 2 (PO 4 ) 4 ·5H 2 O ) granules with millimeter sizes were prepared by using marble (calcium carbonate) granules as the starting material. The method of this study simply comprised of soaking the marble granules in aqueous solutions containing phosphate and/or calcium ions at temperatures between 20° and 37°C. This process did not cause any size change between the initial marble and final brushite or octacalcium phosphate granules. Such DCPD and OCP granules could be useful in maxillofacial, dental, and orthopedic void/bone defect filling and grafting applications. Samples were characterized by X‐ray diffraction, inductively coupled plasma atomic emission spectroscopy, and scanning electron microscopy.

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Available abstract

Brushite ( DCPD , dicalcium phosphate dihydrate, CaHPO 4 ·2H 2 O ) and octacalcium phosphate ( OCP , Ca 8 (HPO 4 ) 2 (PO 4 ) 4 ·5H 2 O ) granules with millimeter sizes were prepared by using marble (calcium carbonate) granules as the starting material. The method of this study simply comprised of soaking the marble granules in aqueous solutions containing phosphate and/or calcium ions at temperatures between 20° and 37°C. This process did not cause any size change between the initial marble and final brushite or octacalcium phosphate granules. Such DCPD and OCP granules could be useful in maxillofacial, dental, and orthopedic void/bone defect filling and grafting applications. Samples were characterized by X‐ray diffraction, inductively coupled plasma atomic emission spectroscopy, and scanning electron microscopy.

Key concepts: Brushite, Octacalcium phosphate, Scanning electron microscope, Hydroxyapatites, Phosphate, Calcium, Chemistry, Mineralogy

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