Department of Physics, B.S. Abdur Rahman Crescent Institute of Science and Technology, Chennai, India.
Department of Physics, B.S. Abdur Rahman Crescent Institute of Science and Technology, Chennai, India.
J Mol Graph Model. 2020 Mar;95:107490. doi: 10.1016/j.jmgm.2019.107490. Epub 2019 Nov 9.
First principles calculations of zinc blende CrMoO and ScMoO in GGA and GGA + U methods are presented. Ferromagnetic states are predicted to be more stable than that of nonmagnetic and antiferromagnetic phases. CrMoO exhibits metallic properties in GGA method, whereas in GGA + U, it exhibits half-metallic ferromagnetism (HMF). ScMoO exhibits HMF in both approaches. In GGA + U, Mo d orbitals in CrMoO are pushed below the E in the valence band whereas Mo d orbitals are raised above the E in the conduction band forming a band gap of about 0.88 eV in the minority spin channel. In ScMoO, Mo-d orbitals split up at the E creating a band gap of about 0.63 eV in the minority spin channel. Half-metallic CrMoO and ScMoO have the integer valued magnetic moments of 4.00 μB and 1.00 μB respectively, The compounds ScMoO and CrMoO exhibit 100% spin polarization having applications in the field of spintronics.
采用 GGA 和 GGA+U 方法对闪锌矿结构 CrMoO 和 ScMoO 进行了第一性原理计算。预测铁磁态比非磁和反铁磁相更稳定。CrMoO 在 GGA 方法中表现出金属性质,而在 GGA+U 中则表现出半金属铁磁性(HMF)。ScMoO 在这两种方法中都表现出 HMF。在 GGA+U 中,CrMoO 中的 Mo d 轨道在价带中低于 E,而 Mo d 轨道在导带中高于 E,在 minority spin 通道中形成约 0.88eV 的能隙。在 ScMoO 中,Mo-d 轨道在 E 处分裂,在 minority spin 通道中形成约 0.63eV 的能隙。半金属 CrMoO 和 ScMoO 分别具有整数磁矩 4.00μB 和 1.00μB。化合物 ScMoO 和 CrMoO 具有 100%的自旋极化,在自旋电子学领域有应用。