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Structural transition of Ti3SiC2 under high hydrostatic pressure: A first-principles study
Authors:Wenxia Feng  Shouxin Cui  Haiquan Hu  Guiqing Zhang  Zengtao Lv
Affiliation:School of Physics Science and Information Technology, Liaocheng University, Liaocheng 252059, PR China
Abstract:We theoretically studied the phase transformation, electronic and elastic properties of Ti3SiC2 ceramic by using the pseudopotential plane-wave method within the density functional theory. Our results demonstrate that there exists a structural phase transition from αTi3SiC2 to βTi3SiC2 under pressure up to 384 GPa, and αTi3SiC2 is the most stable phase at zero pressure. The calculated electronic band structure and density of states reveal the metallic behavior for the polymorphs of Ti3SiC2. The mechanical stability of αTi3SiC2 at zero pressure is confirmed by the elastic constants, and is analyzed in terms of electronic level. By analyzing the ratio between bulk and shear moduli, we conclude that αTi3SiC2 is brittle in nature.
Keywords:A. Metals   C. Ab initio calculations   D. Electronic structure   D. Phase transitions
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