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Related papers: Polar octahedral rotations: a path to new multifun…

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Ferroic transition metal oxides, which exhibit spontaneous elastic, electrical, magnetic or toroidal order, exhibit functional properties that find use in ultrastable solid-state memories to sensors and medical imaging technologies. To…

Materials Science · Physics 2015-03-20 Andrew T. Mulder , Nicole A. Benedek , James M. Rondinelli , Craig J. Fennie

Increasing demands for electric field-tunable electric, magnetic, and orbital (EMO) materials has renewed interests in ferroelectricity and its coupling to EMO properties in complex perovskite oxides. The historic design strategy to achieve…

Materials Science · Physics 2012-04-12 James M. Rondinelli , Craig J. Fennie

First-principles calculations are presented for the layered perovskite Ca$_3$Mn$_2$O$_7$. The results reveal a rich set of coupled structural, magnetic and polar domains in which oxygen octahedron rotations induce ferroelectricity,…

Materials Science · Physics 2010-12-21 Nicole A. Benedek , Craig J. Fennie

The rotation of octahedra (octahedral tilting) is common in ABO3 perovskites and relevant to many physical phenomena, ranging from electronic and magnetic properties, metal-insulator transitions to improper ferroelectricity. Hydrostatic…

Materials Science · Physics 2017-08-09 H. J. Xiang , Mael Guennou , Jorge Íñiguez , Jens Kreisel , L. Bellaiche

The structure of ABO3 perovskites is dominated by two types of unstable modes, namely, the oxygen octahedral rotation (AFD) and ferroelectric (FE) mode. It is generally believed that such AFD and FE modes tend to compete and suppress each…

Materials Science · Physics 2018-05-16 Teng Gu , Timothy Scarbrough , Yurong Yang , Jorge Íñiguez , L. Bellaiche , H. J. Xiang

Rotation of MO6 (M = transition metal) octahedra is a key determinant of the physical properties of perovskite materials. Therefore, tuning physical properties, one of the most important goals in condensed matter research, may be…

Antiferroelectrics, which host both polar and antipolar order parameters, are characterized by the double hysteresis loops which are advantageous for various applications such as high-density energy storage. In this study, we investigate…

Materials Science · Physics 2025-11-26 Seongjoo Jung , Turan Birol

Engineering oxygen octahedra rotation patterns in $ABO_3$ perovskites is a powerful route to design functional materials. Here we propose a strategy that exploits point defects that create local electric dipoles and couple to the oxygen…

Materials Science · Physics 2022-07-12 Jiahui Jia , Xu He , Arsalan Akhtar , Gervasi Herranz , Miguel Pruneda

A wide variety of applications has inspired great interest in designing new materials and investigating fundamental physics in the ferroelectric field. In the concept of ferroelectricity, the spontaneous polarization is traditionally…

Materials Science · Physics 2025-03-18 Zengqian Wang , Yuanfang Yue , Z. Y. Xie , Fengjie Ma , Xun-Wang Yan

Two-dimensional (2D) ferroelectricity has attracted extensive attention since its discovery in the monolayers of van der Waals materials. Here we show that 2D ferroelectricity induced by octahedral rotation distortion is widely present in…

Materials Science · Physics 2022-02-11 Ying Zhou , Shuai Dong , Changxun Shan , Ke Ji , Junting Zhang

We use a combination of symmetry arguments and first-principles calculations to explore the connection between structural distortions and ferroelectricity in the perovskite family of materials. We explain the role of octahedral rotations in…

Materials Science · Physics 2013-08-01 Nicole A. Benedek , Craig J. Fennie

In ABO3 perovskites, oxygen octahedron rotations are common structural distortions that can promote large ferroelectricity in BiFeO3 with an R3c structure [1], but suppress ferroelectricity in CaTiO3 with a Pbnm symmetry [2]. For many…

Materials Science · Physics 2016-04-05 Hongwei Wang , Jianguo Wen , Dean J. Miller , Qibin Zhou , Mohan Chen , Ho Nyung Lee , Karin M. Rabe , Xifan Wu

Doping ferroelectrics with carriers is often detrimental to polarization. This makes the design and discovery of metals that undergo a ferroelectric-like transition challenging. In this letter, we show from first principles that the oxygen…

Materials Science · Physics 2021-08-23 Shutong Li , Turan Birol

Layers of perovskites, found in 3D materials, 2D heterostructures, and nanotubes, often distort from high symmetry to facilitate dipole polarisation that is exploitable in many applications. Using density-functional theory calculations,…

Materials Science · Physics 2025-11-14 Shaowen Xu , Jeffrey R. Reimers , Fanhao Jia , Wei Ren

The octahedron tilt transitions of ABX_3 perovskite-structure materials lead to an anti-polar (or antiferroelectric) arrangement of dipoles, with the low temperature structure having six sublattices polarized along various crystallographic…

Strongly Correlated Electrons · Physics 2013-05-29 Philip B. Allen , Yiing-Rei Chen , Santanu Chaudhuri , Clare P. Grey

The central goal of crystal engineering is to develop precise control over material function \emph{via} rational design of structure. A particularly successful realisation of this paradigm is the example of hybrid improper ferroelectricity…

Materials Science · Physics 2017-12-06 Hanna L B Boström , Mark S Senn , Andrew L Goodwin

Conventional perovskite-type ferroelectrics are based on octahedral units of oxygen, and often comprise toxic Pb to achieve robust ferroelectricity. Here, we report the ferroelectricity in a silicate-based compound, Bi2SiO5 (BSO), induced…

We investigate the oxygen octahedral rotations that occur in two perovskites, SrTiO3 and PbTiO3, as a function of applied three-dimensional electric displacement field, allowing us to map out the phase diagram of rotations in both the…

Materials Science · Physics 2013-02-18 Jiawang Hong , David Vanderbilt

Using first-principles density functional theory calculations, we discover an anomalously large bi-axial strain-induced octahedral rotation axis reorientation in orthorhombic perovskites with tendency towards rhombohedral symmetry. The…

Materials Science · Physics 2011-06-14 James M. Rondinelli , Sinisa Coh

Methylammonium lead iodide, as related organometal halide perovskites, emerged recently as a particularly attractive material for photovoltaic applications. The origin of its appealing properties is sometimes assigned to its potential…

Materials Science · Physics 2022-04-04 Wen-Yi Tong , Jin-Zhu Zhao , Philippe Ghosez
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