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Magnetic and electronic properties of CaFeO2Cl

机译:Cafebo2Cl的磁性和电子性质

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摘要

CaFeO2Cl is a unique exception in the family of the iron oxyhalides. Its crystal structure is not related to the Ruddlesden-Popper phases as known for the other members, but contains layers of edge-sharing FeO2/2O3/3 pyramids without Fe–Cl contacts. The iron atoms form a distorted honeycomb substructure. Magnetization measurements on single crystals show an unexpected weak anisotropy and indicate antiferromagnetic ordering of the iron magnetic moments already at room temperature. 57Fe M?ssbauer spectra confirm the trivalent oxidation state of iron and the presence of magnetic order. DFT calculations using the LDA?+?U approach support a Mott-insulating antiferromagnetic ground state and indicate a Néel-type ordered antiferromagnetic state in the honeycomb layer. The band gap from optical measurements is 1.3 eV and agrees with the red-brown colour as well as with the theoretical calculations.
机译:Cafeo2Cl是铁氧化铁家族中的独特例外。 它的晶体结构与其他成员已知的鲁德德登 - 波普尔阶段无关,而是含有边缘共享FeO2 / 2O3 / 3金字塔的层,没有Fe-Cl接触。 铁原子形成扭曲的蜂窝状结构。 单晶上的磁化测量显示出意想不到的弱各向异性,并指示在室温下已经过的铁磁性矩的反铁磁性排序。 57Fe M?Ssbauer光谱确认铁的三价氧化状态和磁序的存在。 使用LDA的DFT计算+ + + + +α+ u接近摩托绝缘的反铁磁接地状态,并在蜂窝层中表示Néel型有序的反铁磁状态。 光学测量的带隙为1.3eV,并与红棕色以及理论计算同意。

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