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Enhanced graphene-edge-induced magnetism by O_2 introduction during electron irradiation assisted carbon film growth

机译:通过O_2引入在电子照射辅助碳膜生长期间通过O_2引入增强的石墨烯 - 边缘诱导的磁性

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We report the effects of the O-2 introduction during electron irradiation assisted film growth on the structure and magnetic behavior of the graphene nanocrystallites embedded carbon (GNEC) films. It was found that although O-2 was introduced into the chamber during film deposition, there were nearly no oxygen atoms incorporated into the film. The introduced O-2 mainly had an effect on selectively removing the amorphous carbon (a-C) phase and gradually promoting the graphene nanocrystallite growth. Such effect brought about more graphene edges in the GNEC film, and then the saturation magnetization of the film M-s at 300 K increased from 0.10 emu/g to 0.28 emu/g. This research proposes an effective approach to enhance graphene-edge-induced carbon magnetism, providing fundamental basis for potential applications of graphene-based materials in magnetic devices.
机译:我们报告了O-2引入在电子照射辅助薄膜生长期间的效果对石墨烯纳米晶体嵌入碳(GNEC)膜的结构和磁性行为。发现虽然在膜沉积期间将O-2引入腔室中,但几乎没有掺入膜中的氧原子。介绍的O-2主要对选择性地除去无定形碳(A-C)相并逐渐促进石墨烯纳米晶体生长效果。这种效果在GNEC膜中产生了更多的石墨烯边缘,然后膜M-S的饱和磁化为300k从0.10 emu / g增加到0.28 emu / g。该研究提出了一种有效的方法来增强石墨烯诱导的碳磁性,为石墨烯基材料在磁性装置中提供基础。

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