Corrigendum to “Improvement in corrosion resistance of 316L stainless steel in simulated body fluid mixed with antiplatelet drugs by coating with Ti-doped DLC films for application in biomaterials”[Corros. Sci. 208 (2022) 110611].
Wongpanya, P.; Wongpinij, T.; Photongkam, P.; and Siritapetawee, J.
Corrosion Science, 218: 111187. 2023.
link
bibtex
@article{wongpanya2023corrigendum,
title={Corrigendum to “Improvement in corrosion resistance of 316L stainless steel in simulated body fluid mixed with antiplatelet drugs by coating with Ti-doped DLC films for application in biomaterials”[Corros. Sci. 208 (2022) 110611]},
author={Wongpanya, Pornwasa and Wongpinij, Thipusa and Photongkam, Pat and Siritapetawee, Jaruwan},
journal={Corrosion Science},
volume={218},
pages={111187},
year={2023},
publisher={Elsevier}
}
Improvement in corrosion resistance of 316L stainless steel in simulated body fluid mixed with antiplatelet drugs by coating with Ti-doped DLC films for application in biomaterials (vol 208, 110611, 2022).
Wongpanya, P.; Wongpinij, T.; Photongkam, P.; and Siritapetawee, J.
CORROSION SCIENCE, 218. 2023.
link
bibtex
@article{wongpanya2023improvement,
title={Improvement in corrosion resistance of 316L stainless steel in simulated body fluid mixed with antiplatelet drugs by coating with Ti-doped DLC films for application in biomaterials (vol 208, 110611, 2022)},
author={Wongpanya, Pornwasa and Wongpinij, Thipusa and Photongkam, Pat and Siritapetawee, Jaruwan},
journal={CORROSION SCIENCE},
volume={218},
year={2023},
publisher={PERGAMON-ELSEVIER SCIENCE LTD THE BOULEVARD, LANGFORD LANE, KIDLINGTON~…}
}