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富勒烯加合物CS中铁电性的发现

Discovery of Ferroelectricity in the Fullerene Adduct CS.

作者信息

Ai Yong, Liao Wei-Qiang, Weng Yan-Ran, Lv Hui-Peng, Chen Xiao-Gang, Song Xian-Jiang, Li Peng-Fei, Xiong Ren-Gen

机构信息

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

出版信息

J Am Chem Soc. 2023 Oct 25;145(42):23292-23299. doi: 10.1021/jacs.3c08419. Epub 2023 Oct 11.

Abstract

Fullerenes offer versatile functionalities and are promising materials for a widespread range of applications from biomedicine and energy to electronics. Great efforts have been made to manipulate the symmetries of fullerene and its derivatives for studying material properties and novel effects, such as ferroelectricity with polar symmetry; however, no documentary report has been obtained to realize their ferroelectricity. Here, for the first time, we demonstrated clear ferroelectricity in a fullerene adduct formed by C and S. More is different: the combination of the most symmetric molecule C with the highest symmetry and molecule S with high symmetry resulted in the polar CS adduct with a low crystallographic symmetry of the (2) point group at room temperature. The presented CS undergoes polar-to-polar ferroelectric phase transition with the 2F notation, whose ferroelectricity was confirmed by a ferroelectric hysteresis loop and ferroelectric domain switching. This finding opens up a new functionality for fullerenes and sheds light on the exploration of more ferroelectric fullerenes.

摘要

富勒烯具有多种功能,是从生物医学、能源到电子学等广泛应用领域中颇具前景的材料。人们已做出巨大努力来操控富勒烯及其衍生物的对称性,以研究材料特性和新效应,比如具有极性对称性的铁电性;然而,尚未有文献报道实现其铁电性。在此,我们首次在由碳(C)和硫(S)形成的富勒烯加合物中展示了清晰的铁电性。“整体大于部分之和”:最对称的分子C(具有最高对称性)与高对称性分子S相结合,在室温下形成了具有低晶体学对称性(2)点群的极性CS加合物。所呈现的CS经历了具有2F标记的极 - 极铁电相变,其铁电性通过铁电滞回环和铁电畴切换得以证实。这一发现为富勒烯开启了新功能,并为探索更多铁电富勒烯提供了启示。

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