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Realization of ferromagnetic graphene oxide with high magnetization by doping graphene oxide with nitrogen

机译:用氮掺杂氧化石墨烯实现高磁化强磁性氧化石墨烯

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摘要

The long spin diffusion length makes graphene very attractive for novel spintronic devices, and thus has triggered a quest for integrating the charge and spin degrees of freedom. However, ideal graphene is intrinsic non-magnetic, due to a delocalized π bonding network. Therefore, synthesis of ferromagnetic graphene or its derivatives with high magnetization is urgent due to both fundamental and technological importance. Here we report that N-doping can be an effective route to obtain a very high magnetization of ca. 1.66 emu/g, and can make graphene oxide (GO) to be ferromagnetism with a Curie-temperature of 100.2 K. Clearly, our findings can offer the easy realization of ferromagnetic GO with high magnetization, therefore, push the way for potential applications in spintronic devices.
机译:长的自旋扩散长度使石墨烯对新型自旋电子器件非常有吸引力,因此引发了对电荷和自旋自由度积分的追求。然而,理想的石墨烯由于离域的π键网络而具有固有的非磁性。因此,由于基础和技术上的重要性,迫切需要合成具有高磁化强度的铁磁石墨烯或其衍生物。在这里我们报告说,N掺杂可能是获得很高的Ca磁化强度的有效途径。 1.66 emu / g,可以使居里温度为100.2 K的氧化石墨烯(GO)成为铁磁性。显然,我们的发现可以轻松实现高磁化的铁磁性GO,因此,为潜在的应用铺平了道路。自旋电子器件。

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