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沿 SrCo(1-x)Sb(x)O(3-δ) 体系的钴自旋态和磁耦合演变:与晶体结构的相关性。

Evolution of cobalt spin states and magnetic coupling along the SrCo(1-x)Sb(x)O(3-δ) system: correlation with the crystal structure.

机构信息

Instituto de Ciencia de Materiales de Madrid, C.S.I.C., Cantoblanco E-28049, Madrid, Spain.

出版信息

Phys Chem Chem Phys. 2011 Jul 28;13(28):12835-43. doi: 10.1039/c1cp20849g. Epub 2011 Jun 21.

Abstract

The oxides of the SrCo(1-x)Sb(x)O(3-δ) perovskite family have been recently designed, characterized and described as cathode materials for solid-oxide fuel cells with competitive power performance in the temperature range 750-850 °C. They feature a number of interesting properties including a good electronic conductivity, low electrode polarization resistance and adequate thermal expansion; the crystal structure adopts a 3C corner-linked perovskite network with a considerable number of oxygen vacancies. This paper reports on the effects of Sb-doping on the crystal structure features, the Co oxidation state and magnetic properties related to the presence of spin-state transitions in the Co cations. A phase transition was observed from the tetragonal P4/mmm space group for x≤ 0.15 to the cubic Pm ̅3m space group in the x = 0.2 composition from neutron powder diffraction data. For the tetragonal phases the oxygen vacancies were found to be ordered and localized in the axial O2 and equatorial O3 atoms surrounding the Co2 positions. A noticeable distortion of CoO(6) octahedra is observed for x = 0.05 and 0.1, exhibiting a charge-ordering with a mixed oxidation state of Co(3+/4+) at Co1 sites and Co(3+) at Co2 positions: the Jahn-Teller Co(3+) in an intermediate-spin configuration is responsible for the octahedral distortion. Increasing Sb contents promotes a higher average oxidation state of cobalt, from a valence of 3.2+ for x = 0.05 to 3.4+ for x = 0.2, inducing a decrease of the oxygen vacancies and favouring a random distribution over a Pm ̅3m cubic symmetry. All the samples present an antiferromagnetic behaviour with a G-type (k = 0) magnetic structure. The increase of the Sb content induces the weakening of the crystal field (Δ(cf)) in the octahedral environment promoting the Co spin-transition from the intermediate-spin to the high-spin configuration, as evidenced by the decrease of the octahedral distortion, increment of the unit-cell volume and enhancement of the ordered magnetic moment.

摘要

钙钛矿型 SrCo(1-x)Sb(x)O(3-δ)氧化物最近被设计、表征和描述为固体氧化物燃料电池的阴极材料,在 750-850°C 的温度范围内具有竞争力的性能。它们具有许多有趣的性质,包括良好的电子导电性、低电极极化电阻和适当的热膨胀;晶体结构采用 3C 顶角相连的钙钛矿网络,具有相当数量的氧空位。本文报道了 Sb 掺杂对晶体结构特征、Co 氧化态和与 Co 阳离子自旋态转变相关的磁性的影响。从中子粉末衍射数据可以看出,当 x≤0.15 时,从四方 P4/mmm 空间群转变为 x=0.2 时的立方 Pm ̅3m 空间群。对于四方相,氧空位被发现有序地定位在轴向 O2 和赤道 O3 原子周围的 Co2 位置。当 x=0.05 和 0.1 时,可以观察到 CoO(6)八面体的明显扭曲,表现出 Co1 位置的 Co(3+/4+)混合氧化态和 Co2 位置的 Co(3+)的电荷有序:中间自旋构型的 Jahn-Teller Co(3+)负责八面体扭曲。随着 Sb 含量的增加,钴的平均氧化态从 x=0.05 的 3.2+增加到 x=0.2 的 3.4+,导致氧空位减少,并有利于在 Pm ̅3m 立方对称下随机分布。所有样品均表现出反铁磁性,具有 G 型(k=0)磁结构。Sb 含量的增加会导致八面体环境中的晶场(Δ(cf))减弱,从而促进 Co 自旋从中间自旋向高自旋构型转变,这可以通过八面体扭曲的减小、单位晶胞体积的增加和有序磁矩的增强来证明。

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