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Antibacterial effects, biocompatibility and electrochemical behavior of zinc incorporated niobium oxide coating on 316L SS for biomedical applications.

Authors :
K., Pradeep Premkumar
N., Duraipandy
Manikantan Syamala, Kiran
N., Rajendran
Source :
Applied Surface Science. Jan2018 Part B, Vol. 427, p1166-1181. 16p.
Publication Year :
2018

Abstract

In the present study, Nb 2 O 5 (NZ0) composite coatings with various concentrations of zinc (NZ2, NZ4 & NZ6) are produced on 316L SS by sol-gel method with the aim of improving its antibacterial activity, bone formability and corrosion resistance properties. This work studied the surface characterization of NZ0, NZ2, NZ4 & NZ6 coated 316L SS by ATR-FTIR, XRD, HR-SEM with EDAX. The synthesized coatings were different in the morphological aspects, NZ0 shows mesoporous morphology whereas irregular cluster like morphology was observed for the zinc incorporated coatings. The chemical composition of the NZ0 and NZ4 composite coatings were studied by XPS and the results revealed that the zinc exist as ZnO and Nb as Nb 2 O 5 in the coatings. The increase in the concentration of zinc in Nb 2 O 5 increases the hydrophilic nature identified by water contact angle studies. The potentiodynamic polarization studies in simulated body fluid reveals the increase in polarization resistance with decrease in current density (i corr ) and electrochemical impedance spectroscopic studies with increase in charge transfer resistance (R ct ) and double layer capacitance (Q dl ) were observed for NZ4 coated 316L SS. The inhibition of Staphylococcus aureus and Escherichia coli bacteria were identified for NZ4 coated 316L SS by bacterial viability studies. The NZ4 coated 316L SS showed better Osseo-integration by spreading the MG 63 osteoblast cells. The study results imply that zinc incorporated Nb 2 O 5 (NZ4) composite coating exhibits antibacterial activity and also enhance the corrosion resistance and biocompatibility of the 316L SS. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
01694332
Volume :
427
Database :
Academic Search Index
Journal :
Applied Surface Science
Publication Type :
Academic Journal
Accession number :
126162804
Full Text :
https://doi.org/10.1016/j.apsusc.2017.08.221