First-Principles Study of the Properties of Clean and Ni-Doped TiC/Fe Interfaces |
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| Journal | Advanced Materials Research (Volumes 415 - 417) |
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| 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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