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首页> 外文期刊>Physica, B. Condensed Matter >Correlation between ferromagnetism and defects in MgO nanocrystals studied by positron annihilation
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Correlation between ferromagnetism and defects in MgO nanocrystals studied by positron annihilation

机译:正电子an没研究MgO纳米晶体中铁磁性与缺陷的相关性

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High purity MgO nanopowders were pressed into pellets and annealed in air from 100 to 1400 °C. Variation of the microstructures was investigated by X-ray diffraction and positron annihilation spectroscopy. Annealing induces an increase in the MgO grain size from 27 to 60 nm with temperature increasing up to 1400°C. Positron annihilation measurements reveal vacancy defects including Mg vacancies, vacancy clusters, microvoids and large pores in the grain boundary region. Rapid recovery of Mg monovacancies and vacancy clusters was observed after annealing above 1200°C. Room temperature ferromagnetism was observed for MgO nanocrystals annealed at 100, 700, and 1000°C. However, after 1400°C annealing, MgO nanocrystals turn into diamagnetic. Our results suggest that the room temperature ferromagnetism in MgO nanocrystals might originate from the interfacial defects.
机译:将高纯度的MgO纳米粉压成丸粒,然后在100至1400°C的空气中进行退火。通过X射线衍射和正电子an没光谱法研究了微观结构的变化。随着温度升高至1400°C,退火会导致MgO晶粒尺寸从27 nm增加到60 nm。正电子an没测量显示出空位缺陷,包括镁空位,空位簇,微孔和晶界区域中的大孔。在1200℃以上退火后,观察到Mg单空位和空位簇的快速恢复。对于在100、700和1000°C退火的MgO纳米晶体,观察到室温铁磁性。然而,在1400°C退火后,MgO纳米晶体变成反磁性。我们的结果表明,MgO纳米晶体中的室温铁磁性可能源自界面缺陷。

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