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High-vacuum annealing reduction of Co/CoO nanoparticles

机译:Co / CoO纳米粒子的高真空退火还原

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摘要

Porous films of Co/CoO magnetic nanoparticles have been obtained by inert gas condensation and partially oxidized in situ in the deposition chamber. These nanoparticle films were subjected to thermal treatments in high vacuum and the chemical and structural changes monitored by x-ray diffraction, transmission electron microscopy, transport and magnetic measurements (with a focus on the exchange-bias phenomenon), which evidence that for vacuum annealing temperatures above 360 ℃, most of the CoO phase is reduced to metallic Co without requiring the presence of an external reducing agent (e.g., H_2) or a plasma. Additionally, there is a certain degree of particle coalescence resulting in the formation of greater nanoparticles as the annealing temperature increases. This yields a smaller proportion of CoO compared to metallic Co and a reduction of the Co/CoO interface density, pinpointed by a drastic decrease of the exchange-bias field. The crucial roles of the vacuum level and the surface-to-volume ratio are evidenced by magnetic measurements, highlighting the potential of magnetometry as a probe for the reduction/oxidation of composite nanostructures.
机译:Co / CoO磁性纳米颗粒的多孔膜已通过惰性气体冷凝获得,并在沉积室内被部分氧化。这些纳米颗粒薄膜在高真空下进行了热处理,并通过X射线衍射,透射电子显微镜,传输和磁测量(着重于交换偏置现象)监控了化学和结构变化,这证明了真空退火在高于360℃的温度下,大多数CoO相被还原为金属Co,而无需使用外部还原剂(例如H_2)或等离子体。另外,随着退火温度的升高,存在一定程度的颗粒聚结,导致形成更大的纳米颗粒。与金属Co相比,这产生的CoO比例更小,并且由于交换偏置场的急剧减小,可以确定Co / CoO界面密度的降低。磁性测量证明了真空度和表面体积比的关键作用,突显了磁力计作为复合纳米结构还原/氧化探针的潜力。

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