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Strong Interplay between the Electron Spin Lifetime in Chemically Synthesized Graphene Multilayers and Surface-Bound Oxygen

机译:化学合成的石墨烯多层膜中的电子自旋寿命与表面结合氧之间的强相互作用

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摘要

The electron spin lifetime in an assembly of chemically synthesized graphene sheets was found to be extremely sensitive to oxygen. Introducing small concentrations of physisorbed O-2 onto the graphene surface reduced the exceptionally long 140 ns electron spin lifetime by an order of magnitude. This effect was completely reversible: Removing the O-2 by using a dynamic vacuum restored the spin lifetime. The presence of covalently bound oxygen also decreased the electron spin lifetime in graphene, although to a far lesser extent compared to physisorbed O-2. The conduction electrons in graphene were found to play a significant role by counter-balancing the spin depolarization caused by oxygen molecules. Our results highlight the importance of chemical environment control and device packing in practical graphene-based spintronic applications.
机译:发现化学合成的石墨烯片组装中的电子自旋寿命对氧极为敏感。将小浓度的物理吸附O-2引入石墨烯表面,将超长的140 ns电子自旋寿命缩短了一个数量级。这种效应是完全可逆的:使用动态真空去除O-2可以恢复自旋寿命。共价结合氧的存在也降低了石墨烯中的电子自旋寿命,尽管与物理吸附的O-2相比程度要小得多。研究发现,石墨烯中的传导电子通过平衡氧分子引起的自旋去极化而发挥着重要作用。我们的研究结果强调了化学环境控制和器件封装在基于石墨烯的自旋电子学实际应用中的重要性。

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