dc.contributor.authors |
Olgun, Ugursoy; Cetin, Hulya; Hos, Ayseguel; Gulfen, Mustafa; Ustel, Fatih |
|
dc.date.accessioned |
2024-02-23T11:13:47Z |
|
dc.date.available |
2024-02-23T11:13:47Z |
|
dc.date.issued |
2023 |
|
dc.identifier.issn |
0927-6440 |
|
dc.identifier.uri |
http://dx.doi.org/10.1080/09276440.2023.2249697 |
|
dc.identifier.uri |
https://hdl.handle.net/20.500.12619/101851 |
|
dc.description |
Bu yayının lisans anlaşması koşulları tam metin açık erişimine izin vermemektedir. |
|
dc.description.abstract |
In this paper, the nanosilver particles were deposited onto the hydroxyapatite (HAP) microparticles and the obtained nanoAg-HAP particles were coated onto the Ti metal surface using the atmospheric plasma spray method. Then, the obtained nanoAg-HAP coating on Ti substrate was annealed at 700(degrees)C. The antibacterial activities of the nanoAg-HAP coatings on Ti were also tested against the microorganisms. The prepared nanoAg-HAP particles were examined using the optic microscopy, FE-SEM, HR-TEM, XRD and the UV-vis. absorption spectroscopy methods. The nanoAg particles exhibited crystalline spherical morphologies with the particle sizes below 30 nm. In the FE-SEM-EDS measurements, well distribution of nanoAg particles on the HAP microparticles were observed with Ag concentrations of 0.153% and 0.313%. The HR-TEM measurements showed that the nanoAg particles have hexagonal close packing (hcp) crystal structure with the d-spacing values of 0.23 nm (111), 0.21 nm (002) and 0.14 nm (022). After 700 degrees C heat treatment, the prepared nanoAg-HAP coating on Ti metal showed 100% antibacterial activity against E. coli and S. epidermidis bacteria. As a result, the obtained nanoAg-HAP coated Ti metal can be utilized effectively as a self-disinfecting biomedical implant material in the orthopedic bone repairing of the body parts. [GRAPHICAL ABSTRACT] |
|
dc.language.iso |
English |
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dc.relation.isversionof |
10.1080/09276440.2023.2249697 |
|
dc.subject |
NANOPARTICLES |
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dc.subject |
NANOSILVER |
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dc.subject |
DEPOSITION |
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dc.subject |
ALLOY |
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dc.subject |
TEMPERATURE |
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dc.subject |
FABRICATION |
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dc.subject |
COMPOSITES |
|
dc.subject |
INDUCTION |
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dc.subject |
SUBSTRATE |
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dc.subject |
STRONTIUM |
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dc.title |
Atmospheric plasma spray coating of antibacterial nano silver-hydroxyapatite on titanium surface for biomedical applications |
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dc.type |
Article; Early Access |
|
dc.relation.journal |
COMPOS INTERFACE |
|
dc.identifier.doi |
10.1080/09276440.2023.2249697 |
|
dc.identifier.eissn |
1568-5543 |
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dc.contributor.author |
Olgun, U |
|
dc.contributor.author |
Çetin, H |
|
dc.contributor.author |
Hos, A |
|
dc.contributor.author |
Gülfen, M |
|
dc.contributor.author |
Üstel, F |
|
dc.relation.publicationcategory |
Makale - Uluslararası Hakemli Dergi - Kurum Öğretim Elemanı |
|