二次谐波产生
铁电性
居里温度
稀土
光致发光
电介质
发光
极化(电化学)
材料科学
居里
分析化学(期刊)
化学
凝聚态物理
结晶学
光电子学
矿物学
光学
物理化学
物理
激光器
有机化学
铁磁性
作者
Kang Yang,Chang‐Shan Yang,Xing‐Xian Dong,Yu‐Hui Tan,Yun‐Zhi Tang,Wen‐Juan Wei
标识
DOI:10.1002/chem.202000188
摘要
Abstract 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 ( n Bu 4 N ) 3 [M(NO 3 ) x (SCN) y ] ( n Bu 4 N = tetrabutyl ammonium, M=rare‐earth metal, n Bu=CH 3 CH 2 CH 2 CH 2 ), and two new multifunctional molecular ferroelectrics are obtained: ( n Bu 4 N ) 3 [Nd(NO 3 ) 4 (SCN) 2 ] ( 1 ) and ( n Bu 4 N ) 3 [Pr(NO 3 ) 4 (SCN) 2 ] ( 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 s values of 9.05 and 8.50 μC cm −2 , 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.
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