论文标题
缺陷引起的室温铁磁性高质量共同掺杂的ZnO散装样品
Defect Induced Room Temperature Ferromagnetism in High Quality Co-doped ZnO Bulk Samples
论文作者
论文摘要
过渡金属掺杂氧化物中经常报道的室温铁磁性的性质仍然是一个巨大的争论。本文中,我们报告了通过标准的固态反应途径合成的高质量共掺杂ZnO(Zn1-XCOXO)的室温铁磁性。具有低水平结构缺陷的参考顺磁共掺杂的ZnO样品在还原气氛中受到热处理,以便以控制方式在样品中引入缺陷。进行详细的结构分析,以表征诱导的缺陷及其浓度。磁力测定法揭示了在室温下与结构特性直接相关的顺磁性和铁磁相的共存。发现饱和度磁化强度随热处理的加剧而增加,因此,诱导缺陷的密度增加。磁性行为是用结合磁极模型充分解释的。基于理论计算支持的实验发现,我们将观察到的缺陷诱导的铁磁性的起源归因于由于磁性极性缺陷而导致的磁极介导的CO离子之间的铁磁耦合。
The nature of the often reported room temperature ferromagnetism in transition metal doped oxides is still a matter of huge debate. Herein we report on room temperature ferromagnetism in high quality Co-doped ZnO (Zn1-xCoxO) bulk samples synthesized via standard solid-state reaction route. Reference paramagnetic Co-doped ZnO samples with low level of structural defects are subjected to heat treatments in a reductive atmosphere in order to introduce defects in the samples in a controlled way. A detailed structural analysis is carried out in order to characterize the induced defects and their concentration. The magnetometry revealed the coexistence of a paramagnetic and a ferromagnetic phase at room temperature in straight correlation with the structural properties. The saturation magnetization is found to increase with the intensification of the heat treatment, and, therefore, with the increase of the density of induced defects. The magnetic behavior is fully explained in terms of the bound magnetic polaron model. Based on the experimental findings, supported by theoretical calculations, we attribute the origin of the observed defect-induced-ferromagnetism to the ferromagnetic coupling between the Co ions mediated by magnetic polarons due to zinc interstitial defects.