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首页> 外文期刊>Nanotechnology Magazine, IEEE >Nanorobotic Processing of Graphene: A platform tailored for rapid prototyping of graphene-based devices.
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Nanorobotic Processing of Graphene: A platform tailored for rapid prototyping of graphene-based devices.

机译:石墨烯的纳米机械加工:专为基于石墨烯的设备的快速原型设计的平台。

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摘要

Graphene, an ultrathin membrane consisting of carbon, is currently the focus of numerous research groups around the world. Due to its outstanding physical properties, this new type of material is highly promising in enabling several novel applications. However, up until now, the integration of high-quality graphene into real devices remains challenging. This article presents a nanorobotic platform tailored for the rapid prototyping of graphene-based devices. Applying the capabilities of this platform, a nanorobotic strategy is proposed that enables the identification, electrical characterization, and integration of graphene into device structures without using any time-consuming lithographical procedures. In this way, graphene-based devices can be fabricated and classified within a few hours, significantly reducing the effort and, consequently, the costs of device prototyping. As an example of this strategy, graphene flakes are electrically characterized and transferred onto a target area of a final device.
机译:石墨烯是一种由碳组成的超薄膜,目前是全球众多研究小组关注的焦点。由于其出色的物理性能,这种新型材料在实现多种新颖应用方面具有很高的前景。但是,到目前为止,将高质量的石墨烯集成到实际设备中仍然具有挑战性。本文介绍了一种专门针对基于石墨烯的设备的快速原型设计的纳米机器人平台。利用该平台的功能,提出了一种纳米机器人策略,无需使用任何耗时的光刻程序即可实现石墨烯的识别,电学表征以及将其集成到器件结构中。以这种方式,可以在几个小时内制造出基于石墨烯的器件并对其进行分类,从而大大减少了工作量,并因此降低了器件原型设计的成本。作为该策略的一个示例,对石墨烯薄片进行电学表征并将其转移到最终设备的目标区域上。

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