CAS OpenIR
Atomic Coupling Growth of Graphene on Carbon Steel for Exceptional Anti-Icing Performance
Duan, CY; Zhu, YX; Gu, W; Li, MQ; Zhao, D; Zhao, ZH; Chen, YF; Wang, Y; Duan, Chunyang; Zhu, Yuxi; Gu, Wei; Li, Mengqi; Zhao, Dong; Zhao, Zenghua; Chen, Yunfa; Wang, Yu
2018
Source PublicationACS SUSTAINABLE CHEMISTRY & ENGINEERING
ISSN2168-0485
Volume6Issue:12Pages:17359
Abstract

Surface enrichment of regularly arranged C atoms on carbon steel (C-steel) substrates is intriguing but challenging due to the strong bonding force between C and Fe and complex C solubility in C-steel. We propose a novel strategy of introducing a supersaturated C isolating layer on the surface of C-steel to block the ceaseless C dissolution in bulk metal and directly grow graphene on C-steel through a controlled cooling process with selected C sources for the first time. The as-grown graphene films have strong atomic coupling with the adjacent C-steel substrate, and the presence of a gradient, structured cementite layer indicates a C diffusion blocking effect for the bulk. Finally, the novel composite exhibited an exceptional anti-icing ability.

KeywordGraphene Magnetic Domain Carbon Steel Stainless-steel Chemical Vapor Deposition Surface Anti-icing Corrosion Cementite Layer Adhesion Energy Water
SubtypeArticle; Proceedings Paper
DOI10.1021/acssuschemeng.8b04913
WOS IDWOS:000452344900152
Citation statistics
Document Type期刊论文
Identifierhttp://ir.ipe.ac.cn/handle/122111/26679
Collection中国科学院过程工程研究所
Recommended Citation
GB/T 7714
Duan, CY,Zhu, YX,Gu, W,et al. Atomic Coupling Growth of Graphene on Carbon Steel for Exceptional Anti-Icing Performance[J]. ACS SUSTAINABLE CHEMISTRY & ENGINEERING,2018,6(12):17359.
APA Duan, CY.,Zhu, YX.,Gu, W.,Li, MQ.,Zhao, D.,...&Wang, Yu.(2018).Atomic Coupling Growth of Graphene on Carbon Steel for Exceptional Anti-Icing Performance.ACS SUSTAINABLE CHEMISTRY & ENGINEERING,6(12),17359.
MLA Duan, CY,et al."Atomic Coupling Growth of Graphene on Carbon Steel for Exceptional Anti-Icing Performance".ACS SUSTAINABLE CHEMISTRY & ENGINEERING 6.12(2018):17359.
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