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Steric effect-induced modulation of crystallographic symmetry:implementing ferroelasticity in molecular ferroelectrics
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作者 Jie Yao Zi-Jie Feng +9 位作者 Jin-Qi Hu Guo-Wei Du Yu-An Xiong Hao-Ran Ji Tai-Ting Sha Xiangzhi Zhang Zheng-Yin Jing Qiang Pan Huihui Hu Yu-Meng You 《Inorganic Chemistry Frontiers》 2025年第2期561-568,共8页
Ferroelastic materials,as a significant category of primary ferroic materials,have paved the way for the development of shape memory,superelasticity,tunable electronics,MEMS and actuators.The ferroic phase transition ... Ferroelastic materials,as a significant category of primary ferroic materials,have paved the way for the development of shape memory,superelasticity,tunable electronics,MEMS and actuators.The ferroic phase transition rules summarized by Aizu provide a theoretical guideline for material design.However,ferroelectrics and ferroelastics are to some extent intertwined with each other.Decoupling these properties is essential for optimizing material performance and developing better theoretical models.By modifying[(CH_(3))_(4)N][FeCl_(4)],a typical molecular ferroelectric that is not ferroelastic,we synthesized(Me_(2)EtNCH_(3)CH_(2)Cl)FeCl_(4)(DMCE-FeCl_(4)),an organic-inorganic hybrid compound that introduces ferroelasticity while maintaining ferroelectricity.DFT calculations reveal that the shape of the organic cations contributes to ferroelasticity,while their dipole moments contribute to ferroelectricity.This work advances the understanding of ferroic properties and their independent control,with implications for reconfigurable memory devices and intelligent actuators. 展开更多
关键词 ferroic phase transition rules steric effect crystallographic symmetry ferroic materialshave optimizing material performance ferroelectricity ferroelastic materialsas developing better theoretical modelsby
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