Department of Materials Science and Engineering, Pennsylvania State University, University Park, PA 16802, USA.
J Phys Condens Matter. 2010 Jul 28;22(29):295404. doi: 10.1088/0953-8984/22/29/295404. Epub 2010 Jul 7.
The structural and elastic properties of BiMnO(3) with monoclinic (C 2/c) and orthorhombic (Pnma) ferromagnetic (FM) structures have been studied by first-principles calculations within LDA + U and GGA + U approaches. The equilibrium volumes and bulk moduli of BiMnO(3) phases are evaluated by equation of state (EOS) fittings, and the bulk properties predicted by LDA + U calculations are in better agreement with experiment. The orthorhombic phase is found to be more stable than the monoclinic phase at ambient pressure. A monoclinic to monoclinic phase transition is predicted to occur at a pressure of about 10 GPa, which is ascribed to magnetism versus volume instability of monoclinic BiMnO(3). The single-crystal elastic stiffness constants c(ij)s of the monoclinic and orthorhombic phases are investigated using the stress-strain method. The c(46) of the monoclinic phase is predicted to be negative. In addition, the polycrystalline elastic properties including bulk modulus, shear modulus, Young's modulus, bulk modulus-shear modulus ratio, Poisson's ratio, and elastic anisotropy ratio are determined based on the calculated elastic constants. The presently predicted phase transition and elastic properties open new directions for investigation of the phase transitions in BiMnO(3), and provide helpful guidance for the future elastic constant measurements.
通过第一性原理计算的 LDA + U 和 GGA + U 方法研究了具有单斜(C2/c)和正交(Pnma)铁磁(FM)结构的 BiMnO(3)的结构和弹性性质。通过状态方程(EOS)拟合评估了 BiMnO(3)相的平衡体积和体弹模量,并且 LDA + U 计算预测的体性质与实验更吻合。在环境压力下,正交相比单斜相更稳定。预测在约 10 GPa 的压力下会发生单斜-单斜相变,这归因于单斜 BiMnO(3)的磁对体积不稳定性。使用应力-应变法研究了单斜相和正交相的单晶弹性刚度常数 c(ij)s。预测单斜相的 c(46)为负。此外,基于计算的弹性常数确定了多晶弹性性质,包括体弹模量、剪切模量、杨氏模量、体弹模量-剪切模量比、泊松比和弹性各向异性比。目前预测的相变和弹性性质为 BiMnO(3)中的相变研究开辟了新的方向,并为未来的弹性常数测量提供了有益的指导。