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Observation of Ferrochiral Transition Induced by an Antiferroaxial Ordering of Antipolar Structural Units in Ba(TiO)Cu_4(PO_4)_4

机译:对BA(TiO)Cu_4(PO_4)_4(PO_4)_4的抗极性结构单元的抗辐射排序诱导的铁曲程过渡观察

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摘要

Ferrochiral transition, i.e., a transition involving an emergence of chirality, provides an unique opportunity to achieve a nonvolatile reversible control of chirality with external fields. However, materials showing pure ferrochiral transitions, which are accompanied by no other types of ferroic transition, are exceedingly rare. In this study, we propose that a pure ferrochiral transition is achieved by a combination of antipolar and antiferroaxial orderings of structural units, and substantiate this proposal through a study of the chiral compound Ba(TiO)Cu_4(PO_4)_4. Single crystal X-ray diffraction measurements have revealed that this material undergoes a second order ferrochiral transition whose order parameter is described by an antiferroaxial (staggered) rotation of antipolar structural units, thus demonstrating our proposal. Furthermore, by measuring spatial distributions of optical rotation, we successfully visualized a temperature evolution of ferrochiral domains across the transition temperature and demonstrated the relationship between chirality and optical rotation. This work provides a guide to find a pure ferrochiral transition, thus providing an opportunity to achieve a ferroic control of chirality.
机译:德国转型,即涉及手性的出现的过渡,提供了实现与外部领域的持续性的非易失性可逆控制的独特机会。然而,显示纯铁丘过渡的材料,其伴随着没有其他类型的铁渡过渡,非常罕见。在这项研究中,我们提出通过结构单元的抗蠕球和防污排序的组合来实现纯铁丘过渡,并通过研究手性化合物Ba(TiO)Cu_4(PO_4)_4来证实该提议。单晶X射线衍射测量揭示了该材料经历了第二阶铁葫芦转换,其顺序参数由反极性结构单元的反射(交错)旋转描述,从而展示了我们的建议。此外,通过测量光学旋转的空间分布,我们成功地在过渡温度上显示了铁丘域的温度演变,并证明了手性和光学旋转之间的关系。这项工作提供了寻找纯铬葫芦过渡的指南,从而提供了实现对手性的铁义控制的机会。

著录项

  • 来源
    《Journal of the American Chemical Society》 |2021年第9期|3638-3646|共9页
  • 作者单位

    Department of Advanced Materials Science University of Tokyo Kashiwa Chiba 277-8S61 Japan;

    Department of Advanced Materials Science University of Tokyo Kashiwa Chiba 277-8S61 Japan;

    Division of Advanced Ceramics Nagoya Institute of Technology Nagoya 466-8555 Japan;

    Division of Advanced Ceramics and Frontier Research Institute for Materials Science Nagoya Institute of Technology Nagoya Aichi 466-8555 Japan;

    Department of Advanced Materials Science University of Tokyo Kashiwa Chiba 277-8561 Japan;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
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