LICP OpenIR  > 固体润滑国家重点实验室(LSL)
Superdrophobic copper mesh films with rapid oil/water separation properties by electrochemical deposition inspired from butterfly wing
Department固体润滑国家重点实验室
Wang B(王奔); Guo ZG(郭志光); Guo ZG(郭志光)
2013
Source PublicationApplied Physics Letters
ISSN0003-6951
Volume103Issue:6Pages:063704(1-6)
AbstractInspired from butterfly wing, superhydrophobic copper mesh films were fabricated via a facile and environmental friendly method by electroplating Cu nanoparticles on the as-cleaned copper mesh films and followed by a thiol grafting. As-fabricated hierarchical structured copper mesh film showed efficient and rapid oil/water separation ability and could be repeatedly used for numerous times. The key parameters of the fabrication of suitable surface morphologies, including the electroplating time, current, electrolyte temperature, and electrolyte concentration, were particularly studied. The stability of as-prepared copper mesh film was also evaluated by compression, thermal, and ultrasonic tests.
Funding Organizationthe National Nature Science Foundation of China (Grant Nos. 31070155;11172301;21203217);the “Funds for Distinguished Young Scientists” of Hubei Province (2012FFA002);the “Western Light Talent Culture” Project;the “Top Hundred Talents” Program of Chinese Academy of Sciences
Indexed BySCI
If3.515
Language英语
Funding Project空间润滑材料组
compositor第二作者单位
Document Type期刊论文
Identifierhttp://ir.licp.cn/handle/362003/4303
Collection固体润滑国家重点实验室(LSL)
Corresponding AuthorGuo ZG(郭志光)
Recommended Citation
GB/T 7714
Wang B,Guo ZG,Guo ZG. Superdrophobic copper mesh films with rapid oil/water separation properties by electrochemical deposition inspired from butterfly wing[J]. Applied Physics Letters,2013,103(6):063704(1-6).
APA Wang B,Guo ZG,&郭志光.(2013).Superdrophobic copper mesh films with rapid oil/water separation properties by electrochemical deposition inspired from butterfly wing.Applied Physics Letters,103(6),063704(1-6).
MLA Wang B,et al."Superdrophobic copper mesh films with rapid oil/water separation properties by electrochemical deposition inspired from butterfly wing".Applied Physics Letters 103.6(2013):063704(1-6).
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