Effect of pre-annealing on NO32- centers in synthetic hydroxyapatite
Effect of pre-annealing of synthetic hydroxyapatite (HAP) on properties of γ- and UV- induced NO32- centers was studied by electron paramagnetic resonance (EPR). Nitrate-containing hydroxyapatite powders ((N)HAP)) and the powders with an admixture of carbonate and nitrate ions ((C,N)HAP) were anneal...
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Published in: | Radiation measurements Vol. 47; no. 10; pp. 970 - 973 |
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Main Authors: | , , , , , , |
Format: | Journal Article |
Language: | English |
Published: |
Kidlington
Elsevier Ltd
01-10-2012
Elsevier |
Subjects: | |
Online Access: | Get full text |
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Summary: | Effect of pre-annealing of synthetic hydroxyapatite (HAP) on properties of γ- and UV- induced NO32- centers was studied by electron paramagnetic resonance (EPR). Nitrate-containing hydroxyapatite powders ((N)HAP)) and the powders with an admixture of carbonate and nitrate ions ((C,N)HAP) were annealed in the temperature range Tann = 20 °C − 600 °C before irradiation. It was found that pre-annealing of (N)HAP samples changes the parameters of NO32- centers while no changes took place in (C,N)HAP. Moreover, at the pre-annealing temperatures Tann > 200 °C two new NO32- centers were observed in (N)HAP samples; they are characterized by larger value of A⊥ (3.67 and 4.41 mT) as compared to the known centers. It was also found that the dependence of NO32- centers amount on Tann is non-monotonous in both types of samples. Presumably this is caused by the escape of water molecules from HAP during the annealing and essential modification of the defect subsystem of HAP.
► Effect of pre-annealing of γ- or UV- irradiated HAP on NO32- centers were analyzed. ► Pre-annealing of HAP with NO32- and CO32- does not change the parameters of NO32-. ► Pre-annealing of HAP with NO32- changes the hyperfine parameter A⊥ of NO32-. ► Two new NO32- centers in γ-irradiated HAP with NO32- were observed. ► Dependence of NO32- amount on the annealing temperature in HAP is non-monotonous. |
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ISSN: | 1350-4487 1879-0925 |
DOI: | 10.1016/j.radmeas.2012.08.008 |