材料科学
碳化物
氮化物
冶金
金属
图层(电子)
纳米技术
作者
Zixing Wang,Vidya Kochat,Prafull Pandey,S. Kashyap,Soham Chattopadhyay,Atanu Samanta,Suman Sarkar,Praveena Manimunda,Xiang Zhang,Syed Asif,Abhisek Singh,K. Chattopadhyay,Chandra Sekhar Tiwary,Pulickel M. Ajayan
标识
DOI:10.1002/adma.201700364
摘要
Ultrathin ceramic coatings are of high interest as protective coatings from aviation to biomedical applications. Here, a generic approach of making scalable ultrathin transition metal-carbide/boride/nitride using immiscibility of two metals is demonstrated. Ultrathin tantalum carbide, nitride, and boride are grown using chemical vapor deposition by heating a tantalum-copper bilayer with corresponding precursor (C2 H2 , B powder, and NH3 ). The ultrathin crystals are found on the copper surface (opposite of the metal-metal junction). A detailed microscopy analysis followed by density functional theory based calculation demonstrates the migration mechanism, where Ta atoms prefer to stay in clusters in the Cu matrix. These ultrathin materials have good interface attachment with Cu, improving the scratch resistance and oxidation resistance of Cu. This metal-metal immiscibility system can be extended to other metals to synthesize metal carbide, boride, and nitride coatings.
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