Wei Zhen-Hong, Jiang Zhen-Tao, Zhang Xiu-Xiu, Li Ming-Li, Tang Yuan-Yuan, Chen Xiao-Gang, Cai Hu, Xiong Ren-Gen
Ordered Matter Science Research Center , Nanchang University , Nanchang 330031 , People's Republic of China.
Jiangsu Key Laboratory for Science and Applications of Molecular Ferroelectrics , Southeast University , Nanjing 211189 , People's Republic of China.
J Am Chem Soc. 2020 Jan 29;142(4):1995-2000. doi: 10.1021/jacs.9b11665. Epub 2020 Jan 17.
Molecular ferroelectrics are attracting tremendous interest because of their easy and environmentally friendly processing, light weight, low acoustical impedance, and mechanical flexibility, which are viable alternatives or supplements to conventional ceramic ferroelectrics. However, reports of ceramic-like molecular ferroelectrics that can be applied in the polycrystalline form have been scarce. Here, according to the "quasi-spherical theory", we successfully synthesized a ceramic-like molecular ferroelectric with an 3F2 type phase transition at 357 K, 1,5-diazabicyclo[3.2.1]octonium tetrafluoroborate ([3.2.1-dabco]BF), which can show excellent ferroelectric performance in the polycrystalline thin-film form at room temperature. On the basis of the reported molecular ferroelectric [2.2.2-dabco]BF (2.2.2-dabco = 1,4-diazabicyclo[2.2.2]octonium) with an Aizu notation of 4/F2 and two polar axes, we changed the [2.2.2-dabco] cation to the [3.2.1-dabco] cation to reduce the molecular symmetry and keep the quasi-spherical shape simultaneously, making the number of polar axes up to six. Moreover, the spontaneous polarization gets successfully increased from 4.9 μC cm in [2.2.2-dabco]BF to 5.5 μC cm in [3.2.1-dabco]BF. This precise molecular design strategy offers an efficient pathway to design ceramic-like molecular ferroelectrics.
分子铁电体因其易于加工且环保、重量轻、声阻抗低以及机械柔韧性好等特点而备受关注,它们是传统陶瓷铁电体可行的替代品或补充物。然而,关于可应用于多晶形式的类陶瓷分子铁电体的报道却很少。在此,根据“准球形理论”,我们成功合成了一种类陶瓷分子铁电体,即1,5 - 二氮杂双环[3.2.1]辛鎓四氟硼酸盐([3.2.1 - dabco]BF),其在357 K时具有3F2型相变,在室温下以多晶薄膜形式可表现出优异的铁电性能。基于已报道的具有4/F2的相图符号和两个极性轴的分子铁电体[2.2.2 - dabco]BF(2.2.2 - dabco = 1,4 - 二氮杂双环[2.2.2]辛鎓),我们将[2.2.2 - dabco]阳离子改为[3.2.1 - dabco]阳离子,以降低分子对称性并同时保持准球形形状,使极性轴数量增加到六个。此外,自发极化成功地从[2.2.2 - dabco]BF中的4.9 μC/cm²增加到[3.2.1 - dabco]BF中的5.5 μC/cm²。这种精确的分子设计策略为设计类陶瓷分子铁电体提供了一条有效途径。