Ai Yong, Zeng Yu-Ling, He Wen-Hui, Huang Xue-Qin, Tang Yuan-Yuan
Ordered Matter Science Research Center, Nanchang University, Nanchang 330031, People's Republic of China.
J Am Chem Soc. 2020 Aug 12;142(32):13989-13995. doi: 10.1021/jacs.0c06936. Epub 2020 Aug 3.
Topological defects such as vortices in ferroelectric materials are attracting tremendous interest because of their splendid possibilities for unique physical phenomena and potential applications in nanoelectronic devices. However, reports of the vortex structure have been scarce in organic ferroelectrics, which are highly desirable for their mechanical flexibility, easy and environment-friendly processing, and low acoustical impedance. Here, we successfully observed the robust triangular domains in a single-component organic ferroelectric, 2-(hydroxymethyl)-2-nitro-1,3-propanediol (), six of which can form a 6-fold vertex domain structure. To our knowledge, it is the first time that such an intriguing topological vortex gets experimentally confirmed in ferroelectrics. Moreover, the symmetry change of with an Aizu notation of 3F1 leads to the most 48 crystallographically equivalent polarization directions among all ferroelectrics. With those benefits and excellent piezoelectric properties, compound shows great potential as a reconfigurable electronic element or a mechanical sensor for soft robotics, flexible and wearable devices, and biomachines.
铁电材料中的拓扑缺陷,如涡旋,因其独特物理现象的出色可能性以及在纳米电子器件中的潜在应用而引起了极大关注。然而,有机铁电体中涡旋结构的报道却很少,而有机铁电体因其机械柔韧性、易于加工且环保以及低声阻抗而备受青睐。在此,我们成功地在单组分有机铁电体2-(羟甲基)-2-硝基-1,3-丙二醇( )中观察到了稳健的三角形畴,其中六个可以形成六重顶点畴结构。据我们所知,这是首次在铁电体中通过实验证实这种有趣的拓扑涡旋。此外,具有3F1的爱知符号的 的对称性变化导致在所有铁电体中最多有48个晶体学上等效的极化方向。凭借这些优点和出色的压电性能,化合物 作为可重构电子元件或用于软机器人、柔性和可穿戴设备以及生物机器的机械传感器具有巨大潜力。