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Inorganic-organic hybrid switchable dielectric materials with the coexistence of magnetic anomalies induced by reversible high-temperature phase transition

机译:无机 - 有机混合可切换介电材料,具有通过可逆的高温相变诱导的磁异常的共存

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摘要

An inorganic-organic hybrid compound that features a zero-dimensional inorganic structural framework, N-methylpiperidinium tetrabromoferrate(III) (compound 1, [C 6H14N][ FeBr4]), has been reported as a new switchable dielectric material with the coexistence of weak magnetic anomalies. It is noteworthy that 1 demonstrates remarkable dielectric responses, which can be tuned between two distinct dielectric states and reversibly switched by phase transition at similar to 340 K (T-c). Its high-dielectric constants are at least 4 times as large as that of the low-dielectric state. Structural analysis reveals that 1 belongs to the monoclinic crystal system with the space group P2(1)/c at room temperature, but transforms into an orthorhombic system with the space group Cmcm above Tc. The disordering of organic cations affords a driving force for high-temperature phase transition in 1 along with its switchable dielectric activities. Besides, weak magnetic anomalies were also found in 1 at the vicinity of its Tc, which should be reminiscent of another possible physical channel to the phase transition. This finding suggests that 1 might be a potential multifunctional material with the coexistence of switchable dielectric bistability and magnetic responses, which opens up new possibilities to develop molecular functional materials.
机译:具有零维无机结构框架的无机 - 有机杂化化合物,N-甲基哌啶四溴铁(III)(化合物1,[C 6H14N] [FEBR4])作为一种具有弱弱的可切换介电材料的新型可切换介电材料磁异常。值得注意的是,图1说明了显着的介电响应,其可以在两个不同的电介质状态之间调谐,并通过类似于340k(T-C)的相转变可逆地切换。其高介电常数至少为低介电状态的4倍。结构分析表明,1属于室温下的空间组P2(1)/ C的单斜晶体系,但转化成与TC上方的空间组CMCM的正交系统。有机阳离子的障碍为高温相转变的驱动力提供1,以及其可切换的介电活性。此外,在其TC附近也发现弱磁异常,其应该使其成为相位过渡的另一个可能的物理通道。该发现表明,具有具有可切换介电体和磁反应的共存的潜在多功能材料,这使得开发分子功能材料的新可能性。

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