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终于!钛铁矿型氧化物FeCrO₃天然样品的单晶X射线结构。

At last! The single-crystal X-ray structure of a naturally occurring sample of the ilmenite-type oxide FeCrO3.

作者信息

Pérez-Cruz María Ana, Elizalde-González María de la Paz, Escudero Roberto, Bernès Sylvain, Silva-González Rutilo, Reyes-Ortega Yasmi

机构信息

Facultad de Ciencias Químicas, Benemérita Universidad Autónoma de Puebla, Edif. 105I Complejo de Ciencias CU, San Manuel, 72570 Puebla, Pue., Mexico.

Centro de Química del Instituto de Ciencias, Benemérita Universidad Autónoma de Puebla, Edif. F103 Complejo de Ciencias CU, San Manuel, 72570 Puebla, Pue., Mexico.

出版信息

Acta Crystallogr B Struct Sci Cryst Eng Mater. 2015 Oct;71(Pt 5):555-61. doi: 10.1107/S2052520615015838. Epub 2015 Sep 30.

Abstract

A natural single crystal of the ferrimagnetic oxide FeCrO3, which was found in an opencast mine situated in the San Luis Potosí State in Mexico, has been characterized in order to elucidate some outstanding issues about the actual structure of this material. The single-crystal X-ray analysis unambiguously shows that transition metal cations are segregated in alternating layers normal to the threefold crystallographic axis, affording a structure isomorphous to that of ilmenite (FeTiO3), in the space group R3̅. The possible occurrence of cation antisite and vacancy defects is below the limit of detection available from X-ray data. Structural and magnetic results are in agreement with the coherent slow intergrowth of magnetic phases provided by the two antiferromagnetic corundum-type parent oxides Fe2O3 (hematite) and Cr2O3 (eskolaite). Our results are consistent with the most recent density functional theory (DFT) studies carried out on digital FeCrO3 [Sadat Nabi & Pentcheva (2011). Phys. Rev. B, 83, 214424], and suggest that synthetic samples of FeCrO3 might present a cation distribution different to that of the ilmenite structural type.

摘要

在墨西哥圣路易斯波托西州的一个露天矿中发现了铁磁性氧化物FeCrO₃的天然单晶,为阐明有关该材料实际结构的一些突出问题,对其进行了表征。单晶X射线分析明确表明,过渡金属阳离子在垂直于三重晶轴的交替层中分离,在空间群R3̅中形成了与钛铁矿(FeTiO₃)同构的结构。阳离子反位和空位缺陷的可能存在低于X射线数据可检测的极限。结构和磁性结果与由两种反铁磁刚玉型母体氧化物Fe₂O₃(赤铁矿)和Cr₂O₃(埃斯柯莱石)提供的磁相的相干缓慢共生一致。我们的结果与最近对数字FeCrO₃进行的密度泛函理论(DFT)研究[萨达特·纳比和彭切娃(2011年)。《物理评论B》,83,214424]一致,并表明FeCrO₃的合成样品可能呈现出与钛铁矿结构类型不同的阳离子分布。

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