Solution Combustion Synthesis Of Strontium-Doped Hydroxyapatite: Effect Of Sintering And Low Compaction Pressure On The Mechanical Properties And Physiological Stability.
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Materials Letters
Abstract
The solution combustion route was used to fabricate strontium (Sr) doped hydroxyapatite (HAp). A low
compaction pressure method was adopted for pelletizing the powders (Sr-HAp) prior to physical and mechanical
properties measurement. Physiological stability of the pellets was conducted by immersing in Phosphate Buffer
Saline (PBS) solution for 24 h. The Sr-HAp produced a comparatively higher hardness and fracture toughness of
0.38 GPa and 0.82 MPa⋅m1/2 compared with 0.20 GPa and 0.67 MPa⋅m1/2 for undoped HAp. The SEM images
suggested that strontium co-existed with the calcium ion in hydroxyapatite due to the presence of irregular bead-
like structures on a micro-scale. The Sr-HAp pellets were stable in Phosphate Buffer Saline solution.
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Research Article
Citation
Obada, D. O., Salami, K. A., Oyedeji, A. N., Fasanya, O. O., Suleiman, M. U., Ibisola, B. A., ... & Dauda, E. T. (2021). Solution combustion synthesis of strontium-doped hydroxyapatite: effect of sintering and low compaction pressure on the mechanical properties and physiological stability. Materials Letters, 304, 130613.
