Krzton-Maziopa A, Svitlyk V, Pomjakushina E, Puzniak R, Conder K
Faculty of Chemistry, Warsaw University of Technology, Noakowskiego 3, PL-00-664 Warsaw, Poland.
J Phys Condens Matter. 2016 Jul 27;28(29):293002. doi: 10.1088/0953-8984/28/29/293002. Epub 2016 Jun 1.
Alkali metal intercalated iron selenide superconductors A x Fe2-y Se2 (where A = K, Rb, Cs, Tl/K, and Tl/Rb) are characterized by several unique properties, which were not revealed in other superconducting materials. The compounds crystallize in overall simple layered structure with FeSe layers intercalated with alkali metal. The structure turned out to be pretty complex as the existing Fe-vacancies order below ~550 K, which further leads to an antiferromagnetic ordering with Néel temperature fairly above room temperature. At even lower temperatures a phase separation is observed. While one of these phases stays magnetic down to the lowest temperatures the second is becoming superconducting below ~30 K. All these effects give rise to complex relationships between the structure, magnetism and superconductivity. In particular the iron vacancy ordering, linked with a long-range magnetic order and a mesoscopic phase separation, is assumed to be an intrinsic property of the system. Since the discovery of superconductivity in those compounds in 2010 they were investigated very extensively. Results of the studies conducted using a variety of experimental techniques and performed during the last five years were published in hundreds of reports. The present paper reviews scientific work concerning methods of synthesis and crystal growth, structural and superconducting properties as well as pressure investigations.
碱金属插层铁硒超导体AxFe2-ySe2(其中A = K、Rb、Cs、Tl/K和Tl/Rb)具有若干独特性质,这些性质在其他超导材料中并未显现。这些化合物整体结晶为简单的层状结构,其中FeSe层插有碱金属。事实证明,该结构相当复杂,因为现存的铁空位在约550 K以下会有序排列,这进而导致奈尔温度远高于室温的反铁磁有序。在更低温度下会观察到相分离。其中一个相在最低温度下仍保持磁性,而另一个相在约30 K以下变为超导态。所有这些效应导致了结构、磁性和超导性之间的复杂关系。特别是,与长程磁有序和介观相分离相关的铁空位有序被认为是该系统的固有特性。自2010年发现这些化合物具有超导性以来,它们受到了广泛研究。过去五年间使用各种实验技术进行的研究结果发表在数百篇报告中。本文综述了有关合成与晶体生长方法、结构与超导性质以及压力研究的科学工作。