Mechanisms for collective inversion-symmetry breaking in dabconium perovskite ferroelectrics

被引:16
作者
Allen, Dominic J. W. [1 ]
Bristowe, Nicholas C. [2 ]
Goodwin, Andrew L. [1 ]
Yeung, Hamish H. -M. [1 ,3 ]
机构
[1] Univ Oxford, Dept Chem, Inorgan Chem Lab, South Parks Rd, Oxford OX1 3QR, England
[2] Univ Durham, Ctr Phys Mat, South Rd, Durham DH1 3LE, England
[3] Univ Birmingham, Sch Chem, Birmingham B15 2TT, W Midlands, England
基金
欧洲研究理事会; 英国工程与自然科学研究理事会;
关键词
Ferroelectricity - Hydrogen bonds - Polarization - Monte Carlo methods - Density functional theory - Ferroelectric materials - Intelligent systems;
D O I
10.1039/d1tc00619c
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
Dabconium hybrid perovskites include a number of recently-discovered ferroelectric phases with large spontaneous polarisations. The origin of ferroelectric response has been rationalised in general terms in the context of hydrogen bonding, covalency, and strain coupling. Here we use a combination of simple theory, Monte Carlo simulations, and density functional theory calculations to assess the ability of these microscopic ingredients-together with the always-present through-space dipolar coupling-to account for the emergence of polarisation in these particular systems whilst not in other hybrid perovskites. Our key result is that the combination of A-site polarity, preferred orientation along 111 directions, and ferroelastic strain coupling drives precisely the ferroelectric transition observed experimentally. We rationalise the absence of polarisation in many hybrid perovskites, and arrive at a set of design rules for generating FE examples beyond the dabconium family alone.
引用
收藏
页码:2706 / 2711
页数:7
相关论文
共 39 条
[1]  
BELOBROV PI, 1983, ZH EKSP TEOR FIZ+, V84, P1097
[2]   Hybrid Improper Ferroelectricity: A Mechanism for Controllable Polarization-Magnetization Coupling [J].
Benedek, Nicole A. ;
Fennie, Craig J. .
PHYSICAL REVIEW LETTERS, 2011, 106 (10)
[3]   Improper ferroelectricity in perovskite oxide artificial superlattices [J].
Bousquet, Eric ;
Dawber, Matthew ;
Stucki, Nicolas ;
Lichtensteiger, Celine ;
Hermet, Patrick ;
Gariglio, Stefano ;
Triscone, Jean-Marc ;
Ghosez, Philippe .
NATURE, 2008, 452 (7188) :732-U4
[4]   Tolerance factors of hybrid organic-inorganic perovskites: recent improvements and current state of research [J].
Burger, S. ;
Ehrenreich, M. G. ;
Kieslich, G. .
JOURNAL OF MATERIALS CHEMISTRY A, 2018, 6 (44) :21785-21793
[5]   Ferroic multipolar order and disorder in cyanoelpasolite molecular perovskites [J].
Coates, C. S. ;
Gray, H. J. ;
Bulled, J. M. ;
Bostrom, H. L. B. ;
Simonov, A. ;
Goodwin, A. L. .
PHILOSOPHICAL TRANSACTIONS OF THE ROYAL SOCIETY A-MATHEMATICAL PHYSICAL AND ENGINEERING SCIENCES, 2019, 377 (2149)
[6]   LINEAR DISORDER IN CRYSTALS (SILICON, QUARTZ AND FERROELECTRIC PEROVSKITES) [J].
COMES, R ;
LAMBERT, M ;
GUINIER, A .
ACTA CRYSTALLOGRAPHICA SECTION A-CRYSTAL PHYSICS DIFFRACTION THEORETICAL AND GENERAL CRYSTALLOGRAPHY, 1970, A 26 :244-&
[7]   Mechanical properties of the ferroelectric metal-free perovskite [MDABCO](NH4)I3 [J].
Ehrenreich, Michael G. ;
Zeng, Zhixin ;
Burger, Stefan ;
Warren, Mark R. ;
Gaultois, Michael W. ;
Tan, Jin-Chong ;
Kieslich, Gregor .
CHEMICAL COMMUNICATIONS, 2019, 55 (27) :3911-3914
[8]   Control of Multipolar and Orbital Order in Perovskite-like [C(NH2)3]CuxCd1-x(HCOO)3 Metal-Organic Frameworks [J].
Evans, Nicole L. ;
Thygesen, Peter M. M. ;
Bostrom, Hanna L. B. ;
Reynolds, Emily M. ;
Collings, Ines E. ;
Phillips, Anthony E. ;
Goodwin, Andrew L. .
JOURNAL OF THE AMERICAN CHEMICAL SOCIETY, 2016, 138 (30) :9393-9396
[9]   Syntheses and crystal structures of a new family of hybrid perovskites: C5H14N2•ABr3•0.5H2O (A = K, Rb, Cs) [J].
Ferrandin, Sarah ;
Slawin, Alexandra M. Z. ;
Harrison, William T. A. .
ACTA CRYSTALLOGRAPHICA SECTION E-CRYSTALLOGRAPHIC COMMUNICATIONS, 2019, 75 :1243-+
[10]   Mix and Match: Organic and Inorganic Ions in the Perovskite Lattice [J].
Gebhardt, Julian ;
Rappe, Andrew M. .
ADVANCED MATERIALS, 2019, 31 (47)