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Tailoring surface phase transition and magnetic behaviors in BiFeO3 via doping engineering

机译:通过掺杂工程调整BiFeO3中的表面相变和磁行为

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摘要

The charge-spin interactions in multiferroic materials (e.g., BiFeO3) have attracted enormous attention due to their high potential for next generation information electronics. However, the weak and deficient manipulation of charge-spin coupling notoriously limits their commercial applications. To tailor the spontaneous charge and the spin orientation synergistically in BiFeO3 (BFO), in this report, the 3d element of Mn doping engineering is employed and unveils the variation of surface phase transition and magnetic behaviors by introducing chemical strain. The spontaneous ferroelectric response and the corresponding domain structures, magnetic behaviors and spin dynamics in Mn-doped BFO ceramics have been investigated systematically. Both the surface phase transition and magnetization were enhanced in BFO via Mn doping. The interaction between the spontaneous polarization charge and magnetic spin reorientation in Mn-doped BFO are discussed in detail. Moreover, our extensive electron paramagnetic resonance (EPR) results demonstrate that the 3d dopant plays a paramount role in the surface phase transition, which provides an alternative route to tune the charge-spin interactions in multiferroic materials.
机译:多铁材料(例如BiFeO3)中的电荷自旋相互作用由于其下一代信息电子技术的巨大潜力而​​备受关注。然而,众所周知,电荷自旋耦合的弱和不足操纵限制了它们的商业应用。为了协同调整BiFeO3(BFO)中的自发电荷和自旋取向,在本报告中,采用了Mn掺杂工程的3d元素,并通过引入化学应变揭示了表面相变和磁行为的变化。系统研究了锰掺杂BFO陶瓷的自发铁电响应及相应的畴结构,磁行为和自旋动力学。通过Mn掺杂,BFO中的表面相变和磁化强度均得到增强。详细讨论了Mn掺杂的BFO中自发极化电荷与磁自旋取向之间的相互作用。此外,我们广泛的电子顺磁共振(EPR)结果表明3d掺杂剂在表面相变中起着至关重要的作用,这为调节多铁性材料中的电荷自旋相互作用提供了另一种途径。

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