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层状钴氧氟化物 Sr2CoO(3+x)F(1-x) (0 ≤ x ≤ 0.15) 的晶体结构、磁性和输运性质。

Crystal structural, magnetic, and transport properties of layered cobalt oxyfluorides, Sr2CoO(3+x)F(1-x) (0 ≤ x ≤ 0.15).

机构信息

International Center for Young Scientists (ICYS) and International Center for Materials Nanoarchitechtonics (WPI-MANA), National Institute for Materials Science (NIMS), Namiki 1-1, Tsukuba, Ibaraki 305-0044, Japan.

出版信息

Inorg Chem. 2012 Apr 16;51(8):4802-9. doi: 10.1021/ic300116h. Epub 2012 Apr 3.

Abstract

The crystal structure of the layered cobalt oxyfluoride Sr(2)CoO(3)F synthesized under high-pressure and high-temperature conditions has been determined from neutron powder diffraction and synchrotron powder diffraction data collected at temperatures ranging from 320 to 3 K. This material adopts the tetragonal space group I4/mmm over the measured temperature range and the crystal structure is analogous to n = 1 Ruddlesden-Popper type layered perovskite. In contrast to related oxyhalide compounds, the present material exhibits the unique coordination environment around the Co metal center: coexistence of square pyramidal coordination around Co and anion disorder between O and F at the apical sites. Magnetic susceptibility and electrical resistivity measurements reveal that Sr(2)CoO(3)F is an antiferromagnetic insulator with the Néel temperature T(N) = 323(2) K. The magnetic structure that has been determined by neutron diffraction adopts a G-type antiferromagnetic order with the propagation vector k = (1/2 1/2 0) with an ordered cobalt moment μ = 3.18(5) μ(B) at 3 K, consistent with the high spin electron configuration for the Co(3+) ions. The antiferromagnetic and electrically insulating states remain robust even against 15%-O substation for F at the apical sites. However, applying pressure exhibits the onset of the metallic state, probably coming from change in the electronic state of square-pyramidal coordinated cobalt.

摘要

在高温高压条件下合成的层状钴氧氟化物 Sr(2)CoO(3)F 的晶体结构已通过在 320 至 3 K 温度范围内收集的中子粉末衍射和同步加速器粉末衍射数据确定。该材料在测量温度范围内采用四方空间群 I4/mmm,晶体结构类似于 n = 1 Ruddlesden-Popper 型层状钙钛矿。与相关的卤氧化物化合物不同,本材料表现出独特的 Co 金属中心周围的配位环境:Co 周围的四方锥配位与顶位上的 O 和 F 之间的阴离子无序共存。磁化率和电阻率测量表明 Sr(2)CoO(3)F 是一种反铁磁绝缘体,其奈尔温度 T(N) = 323(2) K。通过中子衍射确定的磁结构采用 G 型反铁磁有序,传播矢量 k = (1/2 1/2 0),在 3 K 时具有有序的 Co 磁矩 μ = 3.18(5) μ(B),与 Co(3+)离子的高自旋电子构型一致。即使在顶位上的 F 被 15%-O 取代,反铁磁和电绝缘状态仍然很稳定。然而,施加压力会表现出金属状态的出现,可能来自于四方锥配位的 Co 电子态的变化。

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