Hu Zhao-Bo, Wang Chang-Feng, Sha Tai-Ting, Shi Chao, Ye Le, Ye Heng-Yun, Song You, You Yu-Meng, Zhang Yi
Chaotic Matter Science Research Center, Department of Materials, Metallurgy and Chemistry, Jiangxi University of Science and Technology, Ganzhou, 341000, P. R. China.
Jiangsu Key Laboratory for Science and Applications of Molecular Ferroelectrics, Southeast University, Nanjing, 211189, P. R. China.
Small Methods. 2022 Sep;6(9):e2200421. doi: 10.1002/smtd.202200421. Epub 2022 Jul 5.
The hybrid rare-earth double perovskite (HREDP) system provides great convenience for the construction of multifunctional materials. However, suffering from the high symmetry of their intrinsic structure, HREDPs face the challenges in the realization and optimization of ferroelectric and piezoelectric properties. For the first time, after a systematic investigation of the chirality transformation principle, it is found that the introduction of chirality is an efficient strategy for the targeted construction of multifunctionality, which simultaneously increases the possibility of obtaining multiaxial ferroelectricity and ferroelasticity, and effectively realizes a large piezoelectric response. Moreover, chirality induced ferroelasticity will also achieve excellent magnetic or optical response driven by pressure-sensitive. To verify the feasibility of the above ideas, by using rare-earth ions (Ce ) and suitable chiral organic cations, a new HREDP, (R-N-methyl-3-hydroxylquinuclidinium) RbCe(NO ) (R1) is successfully designed, in which ferroelasticity, multiaxial ferroelectricity, satisfactory piezoelectric response, and the pressure-driven single-ion magnetics switch are simultaneously achieved for the first time. This work shows that the induction of chirality and the HREDP system provide an effective strategy and ideal platform for the expansion and optimization of the functions in perovskite ferroelectrics.
混合稀土双钙钛矿(HREDP)体系为多功能材料的构建提供了极大便利。然而,由于其固有结构的高对称性,HREDPs在铁电和压电性能的实现与优化上面临挑战。首次在系统研究手性转变原理后发现,引入手性是一种有针对性构建多功能性的有效策略,这同时增加了获得多轴铁电性和铁弹性的可能性,并有效实现了大的压电响应。此外,手性诱导的铁弹性还将实现由压敏驱动的优异磁或光响应。为验证上述想法的可行性,通过使用稀土离子(Ce)和合适的手性有机阳离子,成功设计了一种新型HREDP,(R-N-甲基-3-羟基奎宁环)RbCe(NO)(R1),其中首次同时实现了铁弹性、多轴铁电性、令人满意的压电响应以及压力驱动的单离子磁开关。这项工作表明,手性诱导和HREDP体系为钙钛矿铁电体中功能的扩展和优化提供了一种有效策略和理想平台。