Innovative sodium benzoate-modified hydroxyapatite for enhanced dye removal using a combined experimental and DFT approach. [PDF]
Boukra A +11 more
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Comparative Study on the Surface Properties of Synthetic Carbonated Hydroxyapatite and Natural Hydroxyapatite Before and After Contact with Solutions with de- and Remineralization Activity. [PDF]
Ilieva R +3 more
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Hydroxyapatite Nanoparticle Modification of 3D-Printed Crown Resin: Effects of Concentration on Surface Roughness and Vickers Hardness After Thermocycling. [PDF]
Koç E +5 more
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Staged Management of Bone Defects in Chronic Osteomyelitis and Nonunions Using Antibiotic-Loaded Calcium Sulphate-Hydroxyapatite: A Multicenter Retrospective Analysis of 101 Cases. [PDF]
Armbruster J +7 more
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Preparation and evaluation of [<sup>64</sup>Cu]Cu-labeled bisphosphonate amide of DOTA using reactor-produced <sup>64</sup>Cu as an affordable skeletal PET imaging agent. [PDF]
Shetty PSS +5 more
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Biowaste-based hydroxyapatite for bone repair: synthesis from Anadara granosa and Achatina fulica: preliminary study. [PDF]
Anitasari S +5 more
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The existence of a monoclinic phase of hydroxyapatite, Ca 5 (PO 4 ) 3 OH, has been confirmed, by single-crystal structure analysis (weighted "reliability" factor = 3.9 percent on |F| 2 ). The structure has space group P 2
J C, Elliott, P E, Mackie, R A, Young
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Thermoluminescence in hydroxyapatite
Medical Physics, 1979A thermoluminescent (TL) glow peak has been shown to exist at 80°C in synthetic hydroxyapatite, in amorphous calcium phosphate, and in deproteinated rat bone mineral. This TL glow peak is excited by a thermal pretreatment at elevated temperature, followed by exposure to ultraviolet (UV) light. When measured on a cylic TL‐readout UV‐exposure basis after
M R, Chapman, A G, Miller, T G, Stoebe
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