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Increasing coercivity of ferromagnetic zinc oxide with thermal acetylene treatment

机译:热乙炔处理可提高铁磁氧化锌的矫顽力

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We have used a thermal acetylene treatment on ZnO nanorods in order to investigate the possibility of carbon-doping-induced room temperature ferromagnetism in them. The properties of the rods were investigated using SQUID magnetometry and photoelectron spectroscopy and the findings compared to previously reported results. Ferromagnetism was detected in all investigated samples, but no clear correlation between acetylene and the strength of ferromagnetism was observed. A weakening of the hybridization of Zn 3d and O 2p states as a result of acetylene treatment was detected. The coercivity of acetylene-doped samples was observed to be higher than in annealed samples. The findings support the view that ferromagnetism in ZnO is intrinsic in origin and not caused by carbon doping. However, the treatment can still be used to engineer the magnetic properties of the material, as it can tune its surface properties.
机译:为了研究碳掺杂引起的室温铁磁性的可能性,我们对ZnO纳米棒进行了热乙炔处理。使用SQUID磁力测定法和光电子能谱法对棒的性能进行了研究,并将结果与​​先前报道的结果进行了比较。在所有研究样品中均检测到铁磁性,但未观察到乙炔与铁磁性强度之间存在明显的相关性。检测到由于乙炔处理导致Zn 3d和O 2p态的杂交减弱。观察到乙炔掺杂样品的矫顽力比退火样品高。这些发现支持了以下观点:ZnO中的铁磁性是内在起源的,而不是由碳掺杂引起的。但是,该处理仍可以用来设计材料的磁性能,因为它可以调整其表面性能。

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