April 2018

Journal

Ab Initio Predictions of Strong Interfaces in Transition-Metal Carbides and Nitrides for Superhard Nanocomposite Coating Applications

By:
Hu, Chongze; Huang, Jingsong J; Sumpter, Bobby G; Meletis, Efstathios; Dumitrica, Traian
Journal Name:
ACS Applied Nano Materials
Page Number:
TBD
Volume:
TBD
Issue Number:
TBD
Publication Date:
April 2018
View DOI Listing:
https://doi.org/10.1021/acsanm.8b00227

Abstract

Conceiving strong interfaces represents an effective direction in the development of superhard nanocomposite materials for practical applications in protective coatings. In the pursuit of engineering strong nanoscale interfaces between cubic rock-salt (B1) domains, we investigate using density functional theory (DFT) coherent interface models designed based on hexagonal (HX) NiAs and WC structures, as well as experiment. The DFT screening of a collection of transition-metal (M = Zr, Hf, Nb, Ta) carbides and nitrides indicates that the interface models provided by the HX polymorphs store little coherency strain and develop an energetic advantage as the valence-electron concentration increases. Our result suggests that harnessing the polymorphism encountered in transition-metal (M = Zr, Hf, Nb, Ta) carbides and nitrides for interface design represents a promising strategy for advancing superhard nanomaterials.


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