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A scalable polymer-free method for transferring graphene onto arbitrary surfaces

机译:一种可伸缩的聚合物方法,用于将石墨烯转移到任意表面上

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摘要

An efficient and reliable transfer for graphene onto the substrates of interests acts as the crucial bridge between the graphene synthesis and applications. The main reason that this issue has not been fully addressed is the use of a polymer medium to protect the one-atom-thick material during the transfer process. Here we demonstrate a general and scalable method to transfer chemical-vapor-deposited graphene onto arbitrary surfaces without any polymers, which yields the transfer of macroscopically and microscopically clean, continuous and uniform graphene samples onto a wide variety of substrates, as well as the scalable layer-by-layer graphene epitaxial structures. Moreover, the transferred graphene exhibits an overall 100% enhancement in the electrical conductivity compared with the conventional method, so that various high-performance flexible transparent electrodes can be demonstrated. We believe that this new transfer technique will offer the opportunities to the industrialization of next generations of flexible electronics and other graphene-based disruptive technologies. (C) 2020 Elsevier Ltd. All rights reserved.
机译:将石墨烯的高效可靠地传递到感兴趣的基板上用作石墨烯合成和应用之间的关键桥。该问题尚未完全解决的主要原因是使用聚合物介质在转移过程中保护单个原子厚物质。在这里,我们证明了一种将化学蒸汽沉积的石墨烯转移到无任何聚合物的任意表面上的一般和可扩展的方法,这产生了宏观和微观清洁,连续和均匀的石墨烯样品在各种基板上转移,以及可伸缩的层逐层石墨烯外延结构。此外,与传统方法相比,转移的石墨烯表现出导电性的总体100%增强,从而可以对各种高性能柔性透明电极进行说明。我们认为,这种新的转移技术将为下一代柔性电子和其他基于石墨烯的破坏性技术提供工业化的机会。 (c)2020 elestvier有限公司保留所有权利。

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