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用于高 T 多轴分子铁电体精确分子设计的定向分子间相互作用。

Directional Intermolecular Interactions for Precise Molecular Design of a High- T Multiaxial Molecular Ferroelectric.

机构信息

Ordered Matter Science Research Center , Nanchang University , Nanchang 330031 , People's Republic of China.

College of Chemistry , Nanchang University , Nanchang 330031 , People's Republic of China.

出版信息

J Am Chem Soc. 2019 Jan 30;141(4):1781-1787. doi: 10.1021/jacs.8b13223. Epub 2019 Jan 17.

Abstract

Quasi-spherical molecules have recently been developed as promising building blocks for constructing high-performance molecular ferroelectrics. However, although the modification of spherical molecules into quasi-spherical ones can efficiently lower the crystal symmetry, it is still a challenge to precisely arouse a low-symmetric polar crystal structure. Here, by introducing directional hydrogen-bonding interactions in the molecular modification, we successfully reduced the cubic centrosymmetric Pm3̅ m space group of [quinuclidinium]ClO at room temperature to the orthorhombic polar Pna2 space group of [3-oxoquinuclidinium]ClO. Different from the substituent groups of -OH, -CH, and ═CH, the addition of a ═O group with H-acceptor to [quinuclidinium] forms directionally N-H···O═C hydrogen-bonded chains, which plays a critical role in the generation of polar structure in [3-oxoquinuclidinium]ClO. Systematic characterization indicates that [3-oxoquinuclidinium]ClO is an excellent molecular ferroelectric with a high Curie temperature of 457 K, a large saturate polarization of 6.7 μC/cm, and a multiaxial feature of 6 equiv ferroelectric axes. This work demonstrates that the strategy of combining quasi-spherical molecule building blocks with directional intermolecular interactions provides an efficient route to precisely design new eminent molecular ferroelectrics.

摘要

最近,准球形分子被开发为构建高性能分子铁电体的有前途的构建块。然而,尽管将球形分子修饰为准球形分子可以有效地降低晶体对称性,但精确激发低对称极性晶体结构仍然是一个挑战。在这里,通过在分子修饰中引入定向氢键相互作用,我们成功地将室温下立方中心对称 Pm3̅ m 空间群的[奎宁啶]ClO 降低到正交极性 Pna2 空间群的[3-氧代奎宁啶]ClO。与-OH、-CH 和 ═CH 的取代基不同,向[奎宁啶]中添加具有 H-受体的 ═O 基团形成了具有方向性的 N-H···O═C 氢键链,这在[3-氧代奎宁啶]ClO 中极性结构的产生中起着关键作用。系统的表征表明,[3-氧代奎宁啶]ClO 是一种优异的分子铁电体,具有 457 K 的高居里温度、6.7 μC/cm 的大饱和极化和 6 个等效铁电轴的多轴特性。这项工作表明,将准球形分子构建块与定向分子间相互作用相结合的策略为精确设计新型杰出分子铁电体提供了一种有效途径。

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