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二维柔性高通自旋电路。

Two-Dimensional Flexible High Diffusive Spin Circuits.

机构信息

Department of Physics and Astronomy , Uppsala University , Box 516, SE 751 20 , Uppsala , Sweden.

Department of Engineering Sciences , Uppsala University , Box 534, SE 751 21 , Uppsala , Sweden.

出版信息

Nano Lett. 2019 Feb 13;19(2):666-673. doi: 10.1021/acs.nanolett.8b03520. Epub 2019 Jan 11.

Abstract

Owing to their unprecedented electronic properties, graphene and two-dimensional (2D) crystals have brought fresh opportunities for advances in planar spintronic devices. Graphene is an ideal medium for spin transport while being an exceptionally resilient material for flexible nanoelectronics. However, these extraordinary traits have never been combined to create flexible graphene spin circuits. Realizing such circuits could lead to bendable strain-spin sensors, as well as a unique platform to explore pure spin current based operations and low-power 2D flexible nanoelectronics. Here, we demonstrate graphene spin circuits on flexible substrates for the first time. Despite the rough topography of the flexible substrates, these circuits prepared with chemical vapor deposited monolayer graphene reveal an efficient room temperature spin transport with distinctively large spin diffusion coefficients ∼0.2 m s. Compared to earlier graphene devices on Si/SiO substrates, such values are up to 20 times larger, leading to one order higher spin signals and an enhanced spin diffusion length ∼10 μm in graphene-based nonlocal spin valves fabricated using industry standard systems. This high performance arising out of a characteristic substrate terrain shows promise of a scalable and flexible platform towards flexible 2D spintronics. Our innovation is a key step for the exploration of strain-dependent 2D spin phenomena and paves the way for flexible graphene spin memory-logic units and planar spin sensors.

摘要

由于其前所未有的电子特性,石墨烯和二维(2D)晶体为平面自旋电子器件的发展带来了新的机遇。石墨烯是自旋输运的理想介质,同时也是柔性纳米电子学中非常有弹性的材料。然而,这些非凡的特性从未被结合起来创造灵活的石墨烯自旋电路。实现这样的电路可能会导致可弯曲的应变-自旋传感器,以及一个独特的平台来探索基于纯自旋电流的操作和低功耗的 2D 柔性纳米电子学。在这里,我们首次在柔性衬底上展示了石墨烯自旋电路。尽管柔性衬底的形貌粗糙,但这些用化学气相沉积单层石墨烯制备的电路在室温下表现出高效的自旋输运,明显的大自旋扩散系数约为 0.2 m s。与之前在 Si/SiO 衬底上的石墨烯器件相比,这些值大了 20 倍,导致基于非局域自旋阀的自旋信号提高了一个数量级,自旋扩散长度约为 10 μm,而自旋阀是使用工业标准系统制备的。这种源自特征衬底地形的高性能有望实现可扩展和灵活的二维自旋电子平台。我们的创新是探索应变相关的二维自旋现象的关键一步,为柔性石墨烯自旋存储逻辑单元和平面自旋传感器铺平了道路。

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