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首页> 外文期刊>Dalton transactions: An international journal of inorganic chemistry >Phase transition in the extreme: a cubic-to-triclinic symmetry change in dielectrically switchable cyanide perovskites
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Phase transition in the extreme: a cubic-to-triclinic symmetry change in dielectrically switchable cyanide perovskites

机译:极端的相变:介电可切换氰化氰基氏菌的立方对称对称性变化

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摘要

Two novel three-dimensional metal-organic compounds of formula FA(2)KM(CN)(6), where M = Co, Fe and FA = formamidinium (CH(NH2)(2)(+)), have been found to crystallize in a perovskite-like architecture. They have been investigated by X-ray diffraction, dielectric and spectroscopic methods as a function of temperature in order to determine the interactions in the crystals and the mechanism of phase transitions occurring at ca. 321 K upon heating. The phase transitions in both crystals are of first order and originate from the ordering of the formamidinium cations below T-C. Symmetry reduction (cubic-to-triclinic) seems to be the strongest upon temperature decrease among known metal-organic frameworks. These materials have been proposed as possible switchable dielectrics with a convenient near-room-temperature transition temperature.
机译:有两种新型三维金属 - 有机化合物的式FA(2)Km(CN)(6),其中M = CO,Fe和Fa =甲酰胺(CH(NH2)(2)(+))已被发现 在佩罗夫斯基特的建筑中结晶。 通过X射线衍射,介电和光谱方法作为温度的函数来研究它们,以便确定晶体中的相互作用和在CA时发生的相变的机制。 加热后321 k。 两个晶体中的相转变是首先顺序的,源自甲脒阳离子的排序在T-C下。 对称减少(立方对三级)似乎是在已知的金属有机框架中的温度下降时最强。 这些材料已经提出了具有方便的接近室温转变温度的可切换电介质。

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