NIMTE OpenIR  > 2018专题
Comparative corrosion resistance properties between (Cu, Ce)-DLC and Ti co-doped (Cu, Ce)/Ti-DLC films prepared via magnetron sputtering method
Wu, Yangmin; Zhou, Shengguo; Zhao, Wenjie; Ouyang, Lu
2018
Source PublicationCHEMICAL PHYSICS LETTERS
Volume705Pages:50-58
AbstractElement co-doping is an effective fashion to improve the properties of carbon-based film and amplify its application area. Here, (Cu, Ce)-DLC and (Cu, Ce)/Ti-DLC films were successfully prepared via magnetron sputtering. Evolutions of surface/interface morphology, microstructure and wettability of as-prepared films were investigated systematically to in-depth analysis the relationship between their microstructure and anti-corrosion capability. (Cu, Ce)/Ti-DLC film possessed a thicker thickness compared to (Cu, Ce)DLC film. Raman spectra of as-prepared films exposed quintessential features of carbon peak. Scanning vibrating electrode technique revealed the local electrochemical corrosion process of films. Particularly, (Cu, Ce)/Ti-DLC film could demonstrate superior anti-corrosion ability. (C) 2018 Elsevier B.V. All rights reserved.
KeywordCarbon-films Tribological Properties Mild-steel Dlc Films Thin-films Electrochemical Properties Stress Reduction Stainless-steel Coatings Protection
Subject AreaChemistry ; Science & Technology - Other Topics ; Engineering
Language英语
Document Type期刊论文
Identifierhttp://ir.nimte.ac.cn/handle/174433/17289
Collection2018专题
Recommended Citation
GB/T 7714
Wu, Yangmin,Zhou, Shengguo,Zhao, Wenjie,et al. Comparative corrosion resistance properties between (Cu, Ce)-DLC and Ti co-doped (Cu, Ce)/Ti-DLC films prepared via magnetron sputtering method[J]. CHEMICAL PHYSICS LETTERS,2018,705:50-58.
APA Wu, Yangmin,Zhou, Shengguo,Zhao, Wenjie,&Ouyang, Lu.(2018).Comparative corrosion resistance properties between (Cu, Ce)-DLC and Ti co-doped (Cu, Ce)/Ti-DLC films prepared via magnetron sputtering method.CHEMICAL PHYSICS LETTERS,705,50-58.
MLA Wu, Yangmin,et al."Comparative corrosion resistance properties between (Cu, Ce)-DLC and Ti co-doped (Cu, Ce)/Ti-DLC films prepared via magnetron sputtering method".CHEMICAL PHYSICS LETTERS 705(2018):50-58.
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