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Structural, optical, and magnetic properties of low temperature hydrothermal synthesized (Gd, Al)-codoped ZnO nanoparticles

机译:低温水热合成(Gd,Al) - ZnO纳米粒子的结构,光学和磁性和磁性性能

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摘要

Well-dispersed (Gd, Al)-codoped ZnO (Zn0.96-xGdxAl0.04O) nanoparticles (NPs) with different Gd content (x = 0-0.04) were synthesized by low temperature hydrothermal method and their structural, optical, and magnetic properties were investigated. All the as-prepared Zn0.96-xGdxAl0.04O NPs exhibit a hexagonal wurtzite structure with good crystal quality and small particle size (similar to 3 nm). With increasing Gd-doping content from 0 to 0.04, the band gap E-g of Zn0.96-xGdxAl0.04O NPs increases from 3.46 to 3.62 eV owing to the substitution of Gd ions at Zn sites. The presence of additional intrinsic defects Zn-interstitial (Zn-i) and/or O-vacancy (VO) induced by Gd-doping results in the enhanced PL emission and increased PL lifetime. As compared with Al-doped ZnO, the room temperature ferromagnetic behavior of (Gd, Al)-codoped ZnO system is enhanced remarkably, which is explained based on the O-vacancy mediated exchange interactions between Gd and Al ions.
机译:通过低温水热法及其结构,光学和磁性合成具有不同GD含量(X = 0-0.04)的良好分散的(Gd,Al)型ZnO(Zn0.96-XgdxAl0.04O)纳米颗粒(NPS)(x = 0-0.04)。 研究了性质。 所有的AS准备的Zn0.96-xGDXAL0.04O NPS表现出六角形紫立茨结构,晶体质量良好,粒径小(类似3nm)。 随着GD掺杂含量从0升至0.04,由于在Zn位点的替代Gd离子的取代,Zn0.96-XGDXAL0.04O NPS的带隙E-G的带隙E-G从3.46增加到3.62eV。 通过GD掺杂诱导的额外内在缺陷的存在额外的内在缺陷Zn-间质(Zn-1)和/或o - 空位(Vo)导致增强的PL发射和增加的PL寿命。 与Al掺杂的ZnO相比,(GD,Al) - 致释锌系统的室温铁磁性行为显着增强,这是基于Gd和Al离子之间的o空位介导的交换相互作用来解释。

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