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Two-Dimensional Organic-Inorganic Hybrid Rare-Earth Double Perovskite Ferroelectrics

机译:二维有机-无机混合稀土双钙钛矿铁电体

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As a major branch of hybrid perovskites, two-dimensional (2D) hybrid double perovskites are expected to be ideal systems for exploring novel ferroelectric properties, because they can accommodate a variety of organic cations and allow diverse combinations of different metal elements. However, no 2D hybrid double perovskite ferroelectric has been reported since the discovery of halide double perovskites in the 1930s. Based on trivalent rare-earth ions and chiral organic cations, we have designed a new family of 2D rare-earth double perovskite ferroelectrics, A_4M~ⅠM~Ⅲ(NO_3)_8 where A is the organic cation, M~Ⅰ is the alkaline metal or ammonium ion, and M~Ⅲ is the rare-earth ion. This is the first time that ferroelectricity is realized in 2D hybrid double perovskite systems. These ferroelectrics have achieved high-temperature ferroelectricity and photoluminescent properties. By varying the rare-earth ion, variable photoluminescent properties can be achieved. The results reveal that the 2D rare-earth double perovskite systems provide a promising platform for achieving multifunctional ferroelectricity.
机译:作为杂化钙钛矿的主要分支,二维(2D)杂化双钙钛矿有望成为探索新型铁电特性的理想系统,因为它们可以容纳多种有机阳离子并允许不同金属元素的多种组合。但是,自从1930年代发现卤化双钙钛矿以来,还没有二维杂化双钙钛矿铁电体的报道。基于三价稀土离子和手性有机阳离子,我们设计了一个新的二维稀土双钙钛矿铁电体族,A_4M〜ⅠM〜Ⅲ(NO_3)_8,其中A为有机阳离子,M〜Ⅰ为碱金属或铵离子,而M〜Ⅲ是稀土离子。这是在2D混合双钙钛矿系统中首次实现铁电。这些铁电体实现了高温铁电性和光致发光特性。通过改变稀土离子,可以获得可变的光致发光性能。结果表明,二维稀土双钙钛矿体系为实现多功能铁电提供了有希望的平台。

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