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Electronic properties of nanodiamond decorated graphene

机译:纳米金刚石修饰石墨烯的电子性能

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The electronic properties of graphene sheets decorated with nanodiamond (ND) particles have been investigated. The chemical fusion of ND to the graphene lattice creates pockets of local defects with robust interfacial bonding. At the ND-bonded regions, the atoms of graphene lattice follow sp ~3-like bonding, and such regions play the role of conduction bottlenecks for the percolating sp ~2 graphene network. The low-temperature charge transport reveals an insulating behavior for the disordered system associated with Anderson localization for the charge carriers in graphene. A large negative magnetoresistance is observed in this insulating regime, and its origin is discussed in the context of magnetic correlations of the localized charge carriers with local magnetic domains and extrinsic metal impurities associated with the ND.
机译:已经研究了用纳米金刚石(ND)颗粒装饰的石墨烯片的电子性能。 ND与石墨烯晶格的化学融合产生具有牢固的界面键合的局部缺陷袋。在ND键合区域,石墨烯晶格的原子遵循sp〜3样键合,这些区域起渗透sp〜2石墨烯网络的传导瓶颈的作用。低温电荷传输揭示了与石墨烯中载流子的安德森定位相关的无序系统的绝缘行为。在这种绝缘状态下观察到较大的负磁阻,并在局部电荷载流子与局部磁畴和与ND相关的外在金属杂质的磁相关性的背景下讨论了其起源。

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