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AuthorYafei H.F.S.G.A.
AuthorUzun K.
AuthorMusharavati F.
AuthorZalnezhad E.
AuthorHamouda A.M.S.
AuthorYun C.-O.
AuthorJaber F.
Available date2019-10-17T07:44:38Z
Publication Date2018
Publication NameJournal of Alloys and Compounds
ResourceScopus
ISSN9258388
URIhttp://dx.doi.org/10.1016/j.jallcom.2018.01.047
URIhttp://hdl.handle.net/10576/12156
AbstractThe present study describes the synthesis of HA/rGO/Pd nanocomposite thin film coating on stainless steel 304 using electrodeposition method. In this regard, an attempt is made to investigate the corrosion and biocompatibility behavior of HA/rGO/Pd nanocomposite thin film. Biocompatibility tests were carried out on uncoated, HA-coated, HA/rGO-coated, and HA/rGO/Pd coated SST 304 substrates using the human cell line MDA-MB-231 possessing a green fluorescent protein as a reporter for living cells. The tests revealed that the biocompatibility of the SST 304 surface permitted the most improved cell spreading and proliferation with HA/rGO/Pd nanocomposite coating. Corrosion testing carried out in the synthetic medium confirmed that the corrosion resistance of HA/rGO/Pd coated SST 304 was significantly higher than the uncoated, HA-coated, and HA/rGO-coated SST 304. Furthermore, the HA/rGO/Pd coated SST 304 substrates were annealed at different temperatures including 200, 300, 400, and 600 °C and the corrosion and wear behaviors of annealed samples were investigated.
SponsorWe acknowledge Hanyang University's financial support through the Young Faculty Forum Fund (number 201600000001555 ).
Languageen
PublisherElsevier Ltd
SubjectBiocompatibility
Corrosion
Graphene
Hydroxyapatite
Nanocomposite
Wear
TitleHA/rGO/Pd nanocomposite thin film coating on SST 304 - Synthesize, characterization, and properties investigations
TypeArticle
Pagination562-574
Volume Number741


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