arXiv · 2403.05517
Orthorhombic metal carbide-borides MeC$_2$B$_{12}$ (Me=Mg, Ca, Sr) from first principles: structure, stability and mechanical properties
Abstract
First principle DFT simulations are employed to study structural and mechanical properties of orthorhombic B12-based metal carbide-borides. The simulations predict the existence of Ca- and Sr- based phases with the structure similar to that of experimentally observed earlier compound MeC$_2$B$_{12}$. Dynamical stability of both phases is demonstrated, and the phase MeC$_2$B$_{12}$ is found to be thermodynamically stable. According to simulations, Ca- and Sr- based phases have significantly enhanced mechanical characteristics, which suggest their potential application as superhard materials. Calculated shear and Young moduli of these phases are nearly 250 and 540 GPa, respectively, and estimated Vickers hardness is 45-55 GPa.
Explore related subjects
Keep this discovery
Explore connections, maps & timelines
Oleksiy Bystrenko, Jingxian Zhang, Tianxing Sun, Hu Ruan, Yusen Duan, Kaiqing Zhang, Xiaoguang Li. 2024-03-08. Orthorhombic metal carbide-borides MeC$_2$B$_{12}$ (Me=Mg, Ca, Sr) from first principles: structure, stability and mechanical properties. https://doi.org/10.1088/1402-4896%2Fad51b1
Cite the original work for its findings. Save a collection to share your selection of sources.