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Effect of reducing atmosphere on the magnetism of Zn_(1-x)Co_xO (0<= x <=0.10) nanoparticles

机译:还原气氛对Zn_(1-x)Co_xO(0 <= x <= 0.10)纳米粒子磁性的影响

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摘要

We report the crystal structure and magnetic properties of Zn_(1-x)Co_xO (0 <= x <= 0.10) nanoparticles synthesized by heating metal acetates in organic solvent. The nanoparticles were crystallized in the wurtzite ZnO structure after annealing in air and in a forming gas (Ar95 percent + H5 percent). The x-ray diffraction and x-ray photoemission spectroscopy (XPS) data for different Co content show clear evidence for the Co~(2+) ions in tetrahedral symmetry, indicating the substitution of Co~(2+) in the ZnO lattice. However, samples with x = 0.08 and higher cobalt content also indicate the presence of Co metal clusters. Only those samples annealed in the reducing atmosphere of the forming gas, that showed the presence of oxygen vacancies, exhibited ferromagnetism at room temperature. The air annealed samples remained non-magnetic down to 77 K. The essential ingredient in achieving room temperature ferromagnetism in these Zn_(1-x)Co_xO nanoparticles was found to be the presence of additional carriers generated by the presence of the oxygen vacancies.
机译:我们报告了通过在有机溶剂中加热金属乙酸盐合成的Zn_(1-x)Co_xO(0 <= x <= 0.10)纳米粒子的晶体结构和磁性。纳米粒子在空气中和形成气体(Ar95%+ H5%)中退火后,在纤锌矿型ZnO结构中结晶。不同Co含量的X射线衍射和X射线光电子能谱(XPS)数据显示四面体对称的Co〜(2+)离子有明显的证据,表明Co〜(2+)在ZnO晶格中被取代。但是,x = 0.08和较高钴含量的样品也表明存在Co金属簇。仅那些在形成气体的还原气氛中退火的样品显示出氧空位的存在,在室温下显示出铁磁性。空气退火的样品在低至77 K时仍保持非磁性。在这些Zn_(1-x)Co_xO纳米粒子中,实现室温铁磁性的基本成分是存在氧空位而产生的其他载流子。

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