Ying Ting-Ting, Shi Hui-Juan, Chen Shao-Peng, Tang Yun-Zhi, Tan Yu-Hui, Wang Su-Fen, Sun Zhen, Wang Fang Xin, Wan Ming-Yang
Jiangxi Provincial Key Laboratory of Functional Molecular Materials Chemistry, Jiangxi University of Science and Technology, Ganzhou 341000, China.
Inorg Chem. 2023 Apr 17;62(15):6189-6195. doi: 10.1021/acs.inorgchem.3c00569. Epub 2023 Apr 4.
Since the switchable spontaneous polarization of ferroelectric materials endows it with many useful properties such as a large pyroelectric coefficient, switchable spontaneous polarization, and semiconductor, it has a wide range of application prospects, and the research of high-performance molecular ferroelectric materials has become a hot spot. We obtained a 0D organic-inorganic hybrid ferroelectric [(CH)NCHCHCH]FeCl () with well-defined ferroelectric domains and excellent domain inversion and exhibited a relatively large spontaneous polarization ( = 9 μC/m) and a Curie temperature () of 394 K. Furthermore, compound belongs to the non-centrosymmetrical space group 2 and has a strong second-harmonic generation signal. Interestingly, we also performed magnetic tests on , which confirmed that it is a magnetic material. This work provides clues for exploring the application of high-performance molecular ferroelectric materials in future multifunctional smart devices.
由于铁电材料可切换的自发极化赋予其许多有用的特性,如大的热电系数、可切换的自发极化和半导体特性,因此具有广泛的应用前景,高性能分子铁电材料的研究已成为热点。我们获得了一种零维有机-无机杂化铁电体[(CH)NCHCHCH]FeCl (),其具有明确的铁电畴和优异的畴反转,表现出相对较大的自发极化( = 9 μC/m)和394 K的居里温度()。此外,化合物 属于非中心对称空间群2,具有很强的二次谐波产生信号。有趣的是,我们还对 进行了磁性测试,证实它是一种磁性材料。这项工作为探索高性能分子铁电材料在未来多功能智能设备中的应用提供了线索。