Fang Xiaochen, De Chandan, Huang Fei-Ting, Xu Xianghan, Du Kai, Wang Kefeng, Li Bingqing, Cheong Sang-Wook
Rutgers Center for Emergent Materials and Department of Physics and Astronomy, Rutgers University, Piscataway, New Jersey 08854, United States.
J Am Chem Soc. 2023 Dec 27;145(51):28022-28029. doi: 10.1021/jacs.3c08635. Epub 2023 Dec 18.
Unlike what happens in conventional ferroics, the ferrorotational (FR) domain manipulation and visualization in FR materials are nontrivial as they are invariant under both space-inversion and time-reversal operations. FR domains have recently been observed by using the linear electrogyration (EG) effect and X-ray diffraction (XRD) diffraction mapping. However, ferrorotational selectivity, such as the selective processing of the FR domains and direct visualization of the FR domains, e.g., under an optical microscope, would be the next step to study the FR domains and their possible applications in technology. Unexpectedly, we discovered that the microscopic FR structural distortions in ilmenite crystals can be directly coupled with macroscopic mechanical rotations in such a way that FR domains can be visualized under an optical microscope after innovative rotational polishing, a combined ion milling with a specific rotational polishing, or a twisting-induced fracturing process. Thus, the FR domains could be a unique medium to register the memory of a rotational mechanical process due to a novel selective coupling between its microscopic structural rotations and an external macroscopic rotation. Analogous to the important enantioselectivity in modern chemistry and the pharmaceutical industry, this newly discovered ferrorotational selectivity opens up opportunities for FR manipulation and new FR functionality-based applications.
与传统铁电体中发生的情况不同,铁旋转(FR)材料中的铁旋转畴操纵和可视化并非易事,因为它们在空间反演和时间反演操作下都是不变的。最近通过使用线性电旋转(EG)效应和X射线衍射(XRD)衍射映射观察到了FR畴。然而,铁旋转选择性,例如FR畴的选择性处理和FR畴的直接可视化,例如在光学显微镜下,将是研究FR畴及其在技术中可能应用的下一步。出乎意料的是,我们发现钛铁矿晶体中的微观FR结构畸变可以与宏观机械旋转直接耦合,使得在进行创新的旋转抛光、结合离子研磨与特定旋转抛光或扭曲诱导断裂过程后,可以在光学显微镜下观察到FR畴。因此,由于其微观结构旋转与外部宏观旋转之间的新型选择性耦合,FR畴可能是记录旋转机械过程记忆的独特介质。类似于现代化学和制药行业中重要的对映选择性,这种新发现的铁旋转选择性为FR操纵和基于新FR功能的应用开辟了机会。