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Structural and Magnetic Properties of Transition-Metal-Doped Zn 1−xFexO

机译:过渡金属掺杂的Zn 1-xFexO的结构和磁性

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摘要

The ability to produce high-quality single-phase diluted magnetic semiconductors (DMS) is the driving factor to study DMS for spintronics applications. Fe-doped ZnO was synthesized by using a low-temperature co-precipitation technique producing Zn 1−xFexO nanoparticles (x= 0, 0.02, 0.04, 0.06, 0.08, and 0.1). Structural, Raman, density functional calculations, and magnetic studies have been carried out in studying the electronic structure and magnetic properties of Fe-doped ZnO. The results show that Fe atoms are substituted by Zn ions successfully. Due to the small ionic radius of Fe ions compared to that of a Zn ions, the crystal size decreases with an increasing dopant concentration. First-principle calculations indicate that the charge state of iron is Fe 2+ and Fe 3+ with a zinc vacancy or an interstitial oxygen anion, respectively. The calculations predict that the exchange interaction between transition metal ions can switch from the antiferromagnetic coupling into its quasi-degenerate ferromagnetic coupling by external perturbations. This is further supported and explains the observed ferromagnetic bahaviour at magnetic measurements. Magnetic measurements reveal that decreasing particle size increases the ferromagnetism volume fraction. Furthermore, introducing Fe into ZnO induces a strong magnetic moment without any distortion in the geometrical symmetry; it also reveals the ferromagnetic coupling.
机译:生产高质量单相稀磁半导体(DMS)的能力是研究用于自旋电子学应用的DMS的驱动因素。通过使用低温共沉淀技术合成掺杂Fe的ZnO,可生产Zn 1-xFexO纳米粒子(x = 0、0.02、0.04、0.06、0.08和0.1)。在研究掺铁的ZnO的电子结构和磁性时,已经进行了结构,拉曼,密度泛函计算和磁性研究。结果表明,Fe原子被Zn离子成功取代。由于Fe离子的离子半径比Zn离子的离子半径小,因此晶体尺寸随掺杂剂浓度的增加而减小。第一性原理计算表明,铁的电荷状态分别为Fe 2 + 和Fe 3 + 并带有锌空位或间隙氧阴离子。计算预测,过渡金属离子之间的交换相互作用可通过外部扰动从反铁磁耦合转换为准简并铁磁耦合。这进一步得到支持,并解释了在磁测量中观察到的铁磁行为。磁性测量表明,减小的粒径会增加铁磁性的体积分数。此外,将Fe引入ZnO会产生很强的磁矩,而几何对称性不会发生任何变形。它还揭示了铁磁耦合。

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