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First-principles study on the multiferroic BiFeO3 (0001) polar surfaces

机译:多铁性BiFeO3(0001)极性表面的第一性原理研究

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We present first-principles DFT+U calculations to investigate the stoichiometric (0001) polar surfaces of multiferroic R3c BiFeO3. We predict that the complete Fe-O-3-Bi trilayer, which is characterized by almost vanishing compensating charge, forms the most stable negative and positive surfaces. A large inward relaxation is found for the outermost Fe atomic layer at the negative surface, while the 03 atomic layer in the positive surface exhibits a remarkable in-plane rotational reconstruction. Our results show that the insulating nature of BiFeO3 persists at both surfaces but the negative termination is distinguished from the positive surface by the gap state. It is also found that the ferroelectric polarization and weak ferromagnetism of both surfaces have somewhat enhanced character because of relaxation and rehybridization of the surface atoms. Not only the different atomic/electronic structures but also the opposite polarization orientations indicate the distinct chemical properties between the negative and the positive (0001) surfaces and consequently many intriguing applications. (C) 2016 Elsevier B.V. All rights reserved.
机译:我们提出了第一性原理DFT + U计算,以研究多铁R3c BiFeO3的化学计量(0001)极性表面。我们预测,以几乎消失的补偿电荷为特征的完整的Fe-O-3-Bi三层将形成最稳定的负表面和正表面。在负表面的最外层Fe原子层发现了较大的向内弛豫,而在正表面的03原子层表现出了显着的面内旋转重构。我们的结果表明,BiFeO3的绝缘性质在两个表面上均保持不变,但通过间隙状态将负极端与正极面区分开。还发现,由于表面原子的弛豫和再杂化,两个表面的铁电极化和弱铁磁性都有一定程度的增强。不仅不同的原子/电子结构而且相反的极化方向也表明了负(0001)和正(0001)表面之间的独特化学性质,因此引起了许多有趣的应用。 (C)2016 Elsevier B.V.保留所有权利。

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