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First-Principles Study of the Properties of Clean and Ni-Doped TiC/Fe Interfaces

Journal Advanced Materials Research (Volumes 415 - 417)
Volume Advanced Materials
Edited by Jinglong Bu, Zhengyi Jiang and Sihai Jiao
Pages 166-169
DOI 10.4028/www.scientific.net/AMR.415-417.166
Citation Zhi Gang Xiao et al., 2011, Advanced Materials Research, 415-417, 166
Online since December, 2011
Authors Zhi Gang Xiao, Yi Wu, Yu Fang Shen, Zheng Guang Zou, Fei Long, Kai Liu
Keywords Adhesion, Fe, First Principle, Interface, Ni, Titanium Carbide
Abstract

First-principles plane-wave pseudopotential calculations of the electron structure and energetics of the interfaces of clean and Ni-doped TiC/Fe are reported. We predicted the atomic structure, bonding, and the interface binding energy of TiC(100)/Fe(100) and TiC(100)/Fe(110). By comparing the interface bonding energy and the total charge density distribution, the interface have priority to combine in TiC(100)/Fe(100) and TiC(100)/Fe(110) ways, where the former’s interface binding energy is higher. So the structure of TiC(100)/Fe(100) is more stable. The doped Ni atoms have preferential access to Fe-based body and form FeNi alloy, and enhance the interface bonding energy, thus effectively reducing the system energy of TiC(100)/Fe(100) and TiC(100)/Fe(110) interfaces, increasing the bonding strength and stability of interfaces of the composite materials.

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