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The structural and magnetization studies of Co-doped ZnO co-doped with Cu: Synthesized by co-precipitation method

机译:铜共掺杂共掺杂ZnO的结构和磁化研究:共沉淀法合成

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摘要

Co- and Cu-doped ZnO of nominal composition Zn0.95Co0.05O and Zn0.94Co0.05Cu0.01O were synthesized by a co-precipitation method in organic media. Rietveld refinement of X-ray diffraction data of the samples annealed at 725 K showed that they are single phase without any secondary phases. DC magnetization measurements of samples with Cu Co-doping (Zn0.94Co0.05Cu0.01O) as a function of field at room temperature showed a ferromagnetic signature while the samples without Cu co-doping (Zn0.95Co0.05O) are paramagnetic in nature. Both the samples heated at 1075 K are found to be paramagnetic at room temperature. Resistivity measurements above room temperature clearly showed a semiconducting behavior with a decreased resistivity value for Zn0.94Co0.05Cu0.01O compared to Zn0.95Co0.05O and ZnO, confirming additional carriers in Zn0.94Co0.05Cu0.01O due to Cu co-doping. Our results are in agreement with a recent computational study that doping additional carriers are necessary for realizing room temperature ferromagnetism in Co-doped ZnO.
机译:通过共沉淀法在有机介质中合成了标称组成为Zn0.95Co0.05O和Zn0.94Co0.05Cu0.01O的Co和Cu掺杂的ZnO。在725 K退火的样品的X射线衍射数据的Rietveld精炼显示,它们是单相而没有任何次级相。在室温下,具有Cu共掺杂(Zn0.94Co0.05Cu0.01O)的样品的磁场强度的直流磁化测量显示出铁磁特征,而没有Cu共掺杂(Zn0.95Co0.05O)的样品本质上是顺磁性的。发现在1075 K下加热的两个样品在室温下都是顺磁性的。高于室温的电阻率测量清楚地表明,与Zn0.95Co0.05O和ZnO相比,Zn0.94Co0.05Cu0.01O的半导体行为具有降低的电阻率值,这证实了由于Cu共掺杂而导致Zn0.94Co0.05Cu0.01O中的其他载流子。我们的结果与最近的计算研究相吻合,即为实现Co掺杂ZnO中的室温铁磁性,必须掺杂其他载流子。

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