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Temperature-tuned ferromagnetism in hydrogenated multilayer graphene

机译:氢化多层石墨烯中的温度调节铁磁性

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摘要

Improving the ferromagnetism properties of pure carbon-based materials is extremely important for their application in spintronics. Hydrogenation of graphene is an effective way to induce magnetic moment into graphene with the advantage of reversibility. However, little experimental work has been done to prove the effect of hydrogen on the magnetic properties of graphene so far, except for systems containing a large amount of oxygen or plasma-induced vacancy which complicated the magnetic origin. Here we report a facile electrochemical cathodic method to generate hydrogenated multilayer graphene or few-layer graphite using graphite powder as the raw material, and observed hydrogen-induced ferromagnetism in samples annealed at different temperatures. The observed results suggest that ferromagnetism of hydrogenated multilayer graphene can be tuned by high temperature treatment, which is attributed to a changeable relative amount of hydrogen atoms chemisorpted on two different sublattices during thermal treatment.
机译:改善纯碳基材料的铁磁性质对其在自旋电子学中的应用极为重要。石墨烯的氢化是将磁矩诱导成石墨烯的一种有效方法,具有可逆性的优点。但是,到目前为止,除了含有大量氧气或等离子体诱导的空位的系统使磁源复杂化之外,几乎没有进行任何实验工作来证明氢对石墨烯的磁性能的影响。在这里,我们报道了一种简便的电化学阴极方法,以石墨粉为原料生成氢化的多层石墨烯或多层石墨,并观察了在不同温度下退火的样品中氢诱导的铁磁性。观察到的结果表明,可以通过高温处理来调节氢化多层石墨烯的铁磁性,这归因于在热处理期间化学吸附在两个不同亚晶格上的氢原子的相对数量可变。

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