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Magnetoresistance and properties of half-metallic, ferromagnetic double perovskites.

机译:半金属铁磁性双钙钛矿的磁阻和性能。

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摘要

Sr2FeMoO6 is a half-metallic ‘ferromagnetic’ double perovskite with a Curie temperature Tc ≈ 390 to 450 K depending on thermal history; it exhibits a low-field magnetoresistance (MR) at room temperature. Device feasibility would be improved by an increase of the saturation moment from an observed 3.2 μB/formula unit to a theoretical 4.0 μB/formula unit. It has been assumed that the reduced moment is solely due to a random disorder of the Fe-Mo pairs on the B sites of the double-perovskite A2BBO6 structure. Therefore, three strategies to improve B-site order in Sr2FeMoO6 were explored.; A peculiar M-H hysteresis loop with low remanence, Mf 0.5 μ B/formula unit, low coercivity, Hci 200 Oe, and a reduced saturation moment Ms(5 K) 3.5 μB/formula unit was observed for all compositions; it was argued it could be due to the presence of antiphase boundaries. A room-temperature low-field MR in polycrystalline samples is shown to be due to spin-dependent electron transfer across grain boundaries and not across antiphase boundaries. In samples of the system Sr 2−xCaxFeMoO6, an unprecedented increase in the paramagnetic inverse molar susceptibility χmol −1(T) was observed with increasing applied field H; a Weiss constant &thetas; = &thetas;(H) changed from &thetas; Tc to &thetas; > Tc with increasing field. In this system, an overlap of Fe 3+/Fe2+ and Mo6+/Mo5+ redox energies occurs and strong hybridization of crystal-field minority-spin π-bonding orbitals on neighboring cations creates a minority-spin π* band. Stabilization of the Fe3+/Fe2+ relative to the Mo6+ /Mo5+ couple by a field H can progressively transfer electron density from the Mo to the Fe atoms with increasing H.; The removal of overlapping Fe3+/Fe2+ and Mo6+/Mo5+ redox energies through substitution of W6+ for Mo5+ in Sr2FeMoO 6 introduces Fe2+ with localized configuration t 2gα3e2t 2gβ1. A change from metallic to semiconducting behavior is observed near the magnetic percolation threshold xm ≈ 0.80 in Sr2FeMo1−xWxO6; for x ≤ xm, long-range ferromagnetic order was observed. Spin-glass behavior was observed for 0.80 x ≤ 0.98 and Sr2Fe2+W 6+O6 was an antiferromagnetic insulator with TN ≈ 39 K.
机译:Sr 2 FeMoO 6 是具有居里温度T c &ap;的半金属“铁磁”双钙钛矿。 390至450 K,取决于热历史;它在室温下表现出低场磁阻(MR)。通过将饱和力矩从观察到的3.2μ B /公式单位增加到理论上的4.0μ B /公式单位,可以提高设备的可行性。假定减小的力矩完全是由于双钙钛矿A 2 B ' B < super>' ' O 6 结构。因此,探索了三种改善Sr 2 FeMoO 6 中B位序的策略。具有低剩磁,Mf <0.5μ B /公式单位,矫顽力低,H ci <200 Oe和降低的饱和力矩M 的特有的MH磁滞回线所有组合物均观察到s (5 K)<3.5μ B /公式单位;有人认为这可能是由于存在反相边界。多晶样品中的室温低场MR被证明是由于跨晶界而非逆相界的自旋相关电子转移所致。在系统Sr 2-x Ca x FeMoO 6 的样品中,顺磁摩尔反磁化率χ mol <随着施加电场H的增加,观察到/ sub> -1 (T);魏斯常数&thetas; =&thetas;(H)从&thetas;更改为 c 到&thetas; > T c 随场增加。在该系统中,Fe 3 + / Fe 2 + 和Mo 6 + / Mo 5 + 重叠发生氧化还原能量,并且在相邻阳离子上晶体场少数自旋π键轨道的强杂化产生了少数自旋π*能带。 Fe 3 + / Fe 2 + 相对于Mo 6+ / Mo 5 + 对的稳定磁场H可以随着H的增加将电子密度从Mo逐渐转移到Fe原子。通过以下方法去除重叠的Fe 3 + / Fe 2 + 和Mo 6 + / Mo 5 + 氧化还原能在Sr 2 FeMoO 6 中用W 6 + 替代Mo 5 + 引入Fe 2+ < / super>具有局部配置t 2gα 3 e 2 t 2gβ < super> 1 。在磁渗透阈值x m &ap;附近发现了从金属到半导体的变化。 Sr 2 FeMo 1-x W x O 6 中为0.80;对于x≤x m ,观察到远距离铁磁有序。 0.80 2 Fe 2 + W 6 + O 6 是具有T N &ap;的反铁磁绝缘体。 39K。

著录项

  • 作者

    Dass, Ronald Ian.;

  • 作者单位

    The University of Texas at Austin.;

  • 授予单位 The University of Texas at Austin.;
  • 学科 Physics Condensed Matter.
  • 学位 Ph.D.
  • 年度 2000
  • 页码 196 p.
  • 总页数 196
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 O49;
  • 关键词

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