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可调谐铁电极化及其与碘化锡钙钛矿中自旋轨道耦合的相互作用。

Tunable ferroelectric polarization and its interplay with spin-orbit coupling in tin iodide perovskites.

机构信息

Consiglio Nazionale delle Ricerche-CNR-SPIN, I-67100 L'Aquila, Italy.

1] Consiglio Nazionale delle Ricerche-CNR-SPIN, I-67100 L'Aquila, Italy [2] Department of Physical and Chemical Sciences, University of L'Aquila, I-67100 L'Aquila, Italy.

出版信息

Nat Commun. 2014 Dec 23;5:5900. doi: 10.1038/ncomms6900.

Abstract

Ferroelectricity is a potentially crucial issue in halide perovskites, breakthrough materials in photovoltaic research. Using density functional theory simulations and symmetry analysis, we show that the lead-free perovskite iodide (FA)SnI3, containing the planar formamidinium cation FA, (NH2CHNH2)(+), is ferroelectric. In fact, the perpendicular arrangement of FA planes, leading to a 'weak' polarization, is energetically more stable than parallel arrangements of FA planes, being either antiferroelectric or 'strong' ferroelectric. Moreover, we show that the 'weak' and 'strong' ferroelectric states with the polar axis along different crystallographic directions are energetically competing. Therefore, at least at low temperatures, an electric field could stabilize different states with the polarization rotated by π/4, resulting in a highly tunable ferroelectricity appealing for multistate logic. Intriguingly, the relatively strong spin-orbit coupling in noncentrosymmetric (FA)SnI3 gives rise to a co-existence of Rashba and Dresselhaus effects and to a spin texture that can be induced, tuned and switched by an electric field controlling the ferroelectric state.

摘要

铁电性是卤化物钙钛矿的一个潜在关键问题,卤化物钙钛矿是光伏研究中的突破性材料。使用密度泛函理论模拟和对称分析,我们表明,不含铅的钙钛矿碘化亚锡(FA)SnI3 是铁电的。实际上,FA 平面的垂直排列导致“弱”极化,在能量上比 FA 平面的平行排列更稳定,无论是反铁电还是“强”铁电。此外,我们表明,具有沿不同晶体学方向的极轴的“弱”和“强”铁电态在能量上是竞争的。因此,至少在低温下,电场可以稳定极化旋转 π/4 的不同状态,从而产生对多态逻辑有吸引力的高可调谐铁电性。有趣的是,非中心对称(FA)SnI3 中相对较强的自旋轨道耦合导致 Rashba 和 Dresselhaus 效应的共存,以及通过控制铁电状态的电场可以诱导、调节和切换的自旋织构。

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