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Development of Rare Earth Metal Coating on Titanium Implant
Details
Titanium (Ti) has been widely used in bone tissue engineering applications for decades (such as for dental and orthopedic applications). Titania (TiO2) forms on the surface of Ti in oxygen containing environments (such as the body) and has been shown to have suitable cytocompatibility properties but no inherent antibacterial properties. Bacterial infection is a main reason for dental/orthopedic implant failure. Infection is the major reason causing short (less than 5 years) dental/orthopedic implant functional lifetimes. It is, therefore, crucial that to improve the functional lifetime of Ti-based medical devices, one must incorporate antibacterial properties into today's Ti. However, it is not trivial to identify an approach that will reduce bacteria growth without reducing mammalian cell functions. So, an attempt was made to avoid sealing and to produce thick titania and conducting polymer coatings with excellent corrosion resistance at room temperature by carrying out the anodization of titanium. After completion of the anodization process, polymerization will be carried out in electrolyte containing Pani to give composite coatings.
Autorentext
L'auteur, le Dr R. Mohan Raj, travaille en tant que professeur adjoint de chimie au J.K.K. Nataraja College of Arts and Science, à Komarapalayam. Il a acquis une expérience industrielle et universitaire au cours des 12 dernières années. Il a une riche expérience dans le domaine de la recherche en électrochimie. Il a publié plus de dix articles de recherche dans des revues réputées.
Weitere Informationen
- Allgemeine Informationen
- GTIN 09786204986166
- Genre Chemistry
- Sprache Englisch
- Anzahl Seiten 68
- Herausgeber LAP LAMBERT Academic Publishing
- Größe H220mm x B150mm
- Jahr 2022
- EAN 9786204986166
- Format Kartonierter Einband
- ISBN 978-620-4-98616-6
- Titel Development of Rare Earth Metal Coating on Titanium Implant
- Autor Mohan Raj
- Untertitel DE