Peng Hang, Qi Jun-Chao, Song Xian-Jiang, Xiong Ren-Gen, Liao Wei-Qiang
Ordered Matter Science Research Center, Nanchang University 330031 P. R. China
Chem Sci. 2022 Apr 5;13(17):4936-4943. doi: 10.1039/d2sc00689h. eCollection 2022 May 4.
Organic single-component ferroelectrics, as an important class of metal-free ferroelectrics, are highly desirable because of their easy processing, mechanical flexibility, and biocompatibility. However, although nearly 50 years have passed since the discovery of photochromism in azobenzene-doped cholesteric liquid crystals, ferroelectricity has never been found in azobenzene-based crystals. Here, we use an amino group to substitute a fluorine atom of 2,2',4,4',6,6'-hexafluoroazobenzene, which successfully introduces ferroelectricity into 2-amino-2',4,4',6,6'-pentafluoroazobenzene (APFA). APFA shows an extremely high Curie temperature ( ) of 443 K, which is outstanding among single-component ferroelectrics. It also exhibits an indirect optical band gap of 2.27 eV as well as photoisomerization behavior between the -form and the -form triggered by pedal motion. To our knowledge, APFA is the first azobenzene-based ferroelectric crystal. This work opens an avenue to design excellent single-component ferroelectrics and will inspire the exploration of azobenzene-based ferroelectrics for promising applications in biofriendly ferroelectric devices.
有机单组分铁电体作为一类重要的无金属铁电体,因其易于加工、机械柔韧性和生物相容性而备受青睐。然而,尽管自偶氮苯掺杂胆甾相液晶中发现光致变色现象以来已过去近50年,但基于偶氮苯的晶体中从未发现铁电性。在此,我们用一个氨基取代2,2',4,4',6,6'-六氟偶氮苯中的一个氟原子,成功地将铁电性引入2-氨基-2',4,4',6,6'-五氟偶氮苯(APFA)。APFA显示出443 K的极高居里温度( ),这在单组分铁电体中是非常突出的。它还表现出2.27 eV的间接光学带隙以及由踏板运动触发的 - 形式和 - 形式之间的光异构化行为。据我们所知,APFA是第一种基于偶氮苯的铁电晶体。这项工作为设计优异的单组分铁电体开辟了一条途径,并将激发对基于偶氮苯的铁电体的探索,以用于生物友好型铁电器件中的有前景应用。