Yang Kang, Yang Chang-Shan, Dong Xing-Xian, Tan Yu-Hui, Tang Yun-Zhi, Wei Wen-Juan
School of Materials Metallurgy and Chemistry, Jiangxi University of Science and Technology, Ganzhou, 341000, P. R. China.
Chemistry. 2020 May 7;26(26):5887-5892. doi: 10.1002/chem.202000188. Epub 2020 Apr 21.
Smart multifunctional molecular ferroelectrics bearing high Curie temperatures and diverse excellent physical properties, such as second harmonic generation (SHG) responses, luminescence, and semiconductivity, among others, have significant applications but have seldom been documented. Herein, the rare-earth metals Nd and Pr are introduced into a simple molecular system (nBu N) [M(NO ) (SCN) ] (nBu N tetrabutyl ammonium, M=rare-earth metal, nBu=CH CH CH CH ), and two new multifunctional molecular ferroelectrics are obtained: (nBu N) [Nd(NO ) (SCN) ] (1) and (nBu N) [Pr(NO ) (SCN) ] (2). Their distinct heat and dielectric anomaly dependence on temperature verifies that compounds 1 and 2 experience high-temperature para-ferroelectric phase transitions at 408 and 413 K, respectively. Strikingly, both molecular ferroelectrics possess large spontaneous polarization with P values of 9.05 and 8.50 μC cm , respectively, and are further characterized by the appearance of multiple intersecting non-180° domains and polarization switching behavior. In particular, compounds 1 and 2 show good stability with only a small decrease in SHG intensity after switching cycles, suggesting that they have great potential for application in nonlinear optical (NLO) switches. Simultaneously, the rare-earth compounds 1 and 2 present bright yellow-red and bright green fluorescence, respectively, at room temperature.
具有高居里温度和多种优异物理性质(如二次谐波产生(SHG)响应、发光和半导体性等)的智能多功能分子铁电体具有重要应用,但鲜有文献报道。在此,将稀土金属钕和镨引入到一个简单的分子体系(nBu₄N)[M(NO₃)₃(SCN)₃](nBu₄N为四丁基铵,M = 稀土金属,nBu = CH₃CH₂CH₂CH₃)中,得到了两种新型多功能分子铁电体:(nBu₄N)[Nd(NO₃)₃(SCN)₃](1)和(nBu₄N)[Pr(NO₃)₃(SCN)₃](2)。它们独特的热和介电异常对温度的依赖性证实了化合物1和2分别在408和413 K经历高温顺电 - 铁电相变。引人注目的是,这两种分子铁电体都具有较大的自发极化,P值分别为9.05和8.50 μC cm⁻²,并且进一步表现出多个相交的非180°畴的出现和极化切换行为。特别地,化合物1和2在切换循环后SHG强度仅略有下降,显示出良好的稳定性,表明它们在非线性光学(NLO)开关方面具有巨大的应用潜力。同时,稀土化合物1和2在室温下分别呈现亮黄 - 红色和亮绿色荧光。