Detailed Information on Publication Record
2022
A release of Ti-ions from nanostructured titanium oxide surfaces
VRCHOVECKÁ, Kateřina, Adam WEISER, Jan PŘIBYL, Jan KUTA, Jakub HOLZER et. al.Basic information
Original name
A release of Ti-ions from nanostructured titanium oxide surfaces
Authors
VRCHOVECKÁ, Kateřina (203 Czech Republic, belonging to the institution), Adam WEISER (203 Czech Republic), Jan PŘIBYL (203 Czech Republic, belonging to the institution), Jan KUTA (203 Czech Republic, belonging to the institution), Jakub HOLZER (203 Czech Republic), Monika PÁVKOVÁ GOLDBERGOVÁ (203 Czech Republic, belonging to the institution), Dinara SOBOLA (203 Czech Republic) and Antonín DLOUHÝ (203 Czech Republic, guarantor)
Edition
Surfaces and Interfaces, Amsterdam, Elsevier, 2022, 2468-0230
Other information
Language
English
Type of outcome
Článek v odborném periodiku
Field of Study
20501 Materials engineering
Country of publisher
Netherlands
Confidentiality degree
není předmětem státního či obchodního tajemství
References:
Impact factor
Impact factor: 6.200
RIV identification code
RIV/00216224:14110/22:00119748
Organization unit
Faculty of Medicine
UT WoS
000764897900003
Keywords in English
Titanium; Nanostructure; Wetting; Nanotube; Anodization; Ti-ion release
Tags
International impact, Reviewed
Změněno: 18/10/2024 09:49, Ing. Jana Kuchtová
Abstract
V originále
A release of Ti-ions from four distinct surface oxides into a liquid Dulbecco Modified Eagle Medium is investigated. Four oxide layers grown on bulk titanium samples were characterized in detail with respect to their morphology, wetting parameters and phase and chemical compositions and subsequently exposed to the medium. In spite of fundamental differences, which existed between the four individual layers in terms of their thickness, nanoscale structure and contact area with the liquid, a concentration of Ti-ions transferred into the medium was markedly similar. These results suggest that a key thermodynamic parameter governing the transfer of Ti-ions is their solubility limit in the medium. For the investigated oxide-liquid systems, the solubility limit was estimated as 10-20 mu g/l at 37 degrees C. Interestingly, many less systematic data reported so far in the literature can be rationalized based on a similar saturation scenario.
Links
EF17_043/0009632, research and development project |
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GA20-11321S, research and development project |
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LM2018121, research and development project |
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MUNI/A/1391/2021, interní kód MU |
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MUNI/11/63905/2018, interní kód MU |
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90110, large research infrastructures |
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90127, large research infrastructures |
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