M. Lakrat Et Al. , "Synthesis and characterization of pure and Mg, Cu, Ag, and Sr doped calcium-deficient hydroxyapatite from brushite as precursor using the dissolution-precipitation method," POWDER TECHNOLOGY , vol.413, 2023
Lakrat, M. Et Al. 2023. Synthesis and characterization of pure and Mg, Cu, Ag, and Sr doped calcium-deficient hydroxyapatite from brushite as precursor using the dissolution-precipitation method. POWDER TECHNOLOGY , vol.413 .
Lakrat, M., Jodati, H., Mejdoubi, E. M., & EVİS, Z., (2023). Synthesis and characterization of pure and Mg, Cu, Ag, and Sr doped calcium-deficient hydroxyapatite from brushite as precursor using the dissolution-precipitation method. POWDER TECHNOLOGY , vol.413.
Lakrat, Mohammed Et Al. "Synthesis and characterization of pure and Mg, Cu, Ag, and Sr doped calcium-deficient hydroxyapatite from brushite as precursor using the dissolution-precipitation method," POWDER TECHNOLOGY , vol.413, 2023
Lakrat, Mohammed Et Al. "Synthesis and characterization of pure and Mg, Cu, Ag, and Sr doped calcium-deficient hydroxyapatite from brushite as precursor using the dissolution-precipitation method." POWDER TECHNOLOGY , vol.413, 2023
Lakrat, M. Et Al. (2023) . "Synthesis and characterization of pure and Mg, Cu, Ag, and Sr doped calcium-deficient hydroxyapatite from brushite as precursor using the dissolution-precipitation method." POWDER TECHNOLOGY , vol.413.
@article{article, author={Mohammed Lakrat Et Al. }, title={Synthesis and characterization of pure and Mg, Cu, Ag, and Sr doped calcium-deficient hydroxyapatite from brushite as precursor using the dissolution-precipitation method}, journal={POWDER TECHNOLOGY}, year=2023}