Zhi-Qiao Chen , Peng Deng , Tian-Yu Tang , Xiao-Nan Wei , Qi Dai , Qi-Qi Liang , Yao Wang , Quan Xie , Yan-Lin Tang
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引用次数: 0
Abstract
In this paper, based on the first principles of density functional theory, we investigated the structure, phonon spectrum, magnetism, electronic structure, and elastic properties of cubic antiperovskite borides Ru3BA (A = V/Nb/Ta). The lattice constants of Ru3BA (A = V/Nb/Ta) calculated using the GGA functional are 4.01 Å, 4.06 Å, and 4.06 Å, respectively. The phonon spectrum calculations reveal that Ru3BNb and Ru3BTa have no imaginary frequencies, indicating that these two materials are thermodynamically stable. Although a small imaginary frequency exists in the phonon spectrum of Ru3BV, its elastic constants meet the Born-Huang stability criterion, suggesting that Ru3BV also has structural stability. The band structure analysis shows that Ru3BA (A = V/Nb/Ta) are all metallic. The elastic constant data indicate that Ru3BA (A = V/Nb/Ta) exhibit elastic anisotropy. Their Poisson’s ratio values are all 0.23, indicating that they are brittle materials. The magnetic moment calculations for Ru3BA (A = V/Nb/Ta) are −0.11 μB, 0.29 × 10−8 μB, and −0.32 × 10−9 μB, respectively, indicating that Ru3BV is a ferromagnetic material, while Ru3BNb and Ru3BTa are paramagnetic materials. Ru3BA (A = V/Nb/Ta) not only possesses high hardness (21.17 GPa, 21.23 Gpa, and 22.09 Gpa, respectively), high bulk modulus (245.03 Gpa, 262.79 Gpa, and 272.72 Gpa, respectively), and high shear modulus (162.41 Gpa, 169.81 Gpa, and 177.55 Gpa, respectively), but also exhibits good thermal and chemical stability. Additionally, it has a certain degree of metallic properties, showing potential as a transition metal boride thin-film material. On the other hand, Ru3BA (A = V/Nb/Ta) has good thermal stability and a high machinability index (1.89, 1.84, and 1.81, respectively), and is expected to have good application value in the mechanical fields such as cutting and grinding of ferrous metals.
期刊介绍:
Launched in January 1998, Inorganic Chemistry Communications is an international journal dedicated to the rapid publication of short communications in the major areas of inorganic, organometallic and supramolecular chemistry. Topics include synthetic and reaction chemistry, kinetics and mechanisms of reactions, bioinorganic chemistry, photochemistry and the use of metal and organometallic compounds in stoichiometric and catalytic synthesis or organic compounds.