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Graphene supported graphone/graphane bilayer nanostructure material for spintronics.

机译:石墨烯支持用于自旋电子学的石墨烯/石墨烯双层纳米结构材料。

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摘要

We report an investigation into the magnetic and electronic properties of partially hydrogenated vertically aligned few layers graphene (FLG) synthesized by microwave plasma enhanced chemical vapor deposition. The FLG samples are hydrogenated at different substrate temperatures to alter the degree of hydrogenation and their depth profile. The unique morphology of the structure gives rise to a unique geometry in which graphane/graphone is supported by graphene layers in the bulk, which is very different from other widely studied structures such as one-dimensional nanoribbons. Synchrotron based x-ray absorption fine structure spectroscopy measurements have been used to investigate the electronic structure and the underlying hydrogenation mechanism responsible for the magnetic properties. While ferromagnetic interactions seem to be predominant, the presence of antiferromagnetic interaction was also observed. Free spins available via the conversion of sp2 to sp3 hybridized structures, and the possibility of unpaired electrons from defects induced upon hydrogenation are thought to be likely mechanisms for the observed ferromagnetic orders.
机译:我们报告了对通过微波等离子体增强化学气相沉积法合成的部分氢化的垂直排列的几层石墨烯(FLG)的磁性和电子性质的研究。 FLG样品在不同的基板温度下进行氢化,以改变氢化程度及其深度分布。结构的独特形态产生了独特的几何形状,其中石墨烷/石墨烯由整体中的石墨烯层支撑,这与其他广泛研究的结构(例如一维纳米带)有很大不同。基于同步加速器的X射线吸收精细结构光谱测量已用于研究电子结构以及引起磁性的潜在加氢机理。尽管铁磁相互作用似乎占主导地位,但也观察到了反铁磁相互作用的存在。可以通过将sp2转换为sp3杂化结构来获得自由自旋,以及由于氢化引起的缺陷产生不成对电子的可能性,可能是观察到的铁磁有序的机制。

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