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Graphene transfer: key for applications

机译:石墨烯转移:应用程序的关键

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摘要

The first micrometer-sized graphene flakes extracted from graphite demonstrated outstanding electrical, mechanical and chemical properties, but they were too small for practical applications. However, the recent advances in graphene synthesis and transfer techniques have enabled various macroscopic applications such as transparent electrodes for touch screens and light-emitting diodes (LEDs) and thin-film transistors for flexible electronics in particular. With such exciting potential, a great deal of effort has been put towards producing larger size graphene in the hopes of industrializing graphene production. Little less than a decade after the first discovery, graphene now can be synthesized up to 30 inches in its diagonal size using chemical vapour deposition methods. In making this possible, it was not only the advances in the synthesis techniques but also the transfer methods that deliver graphene onto target substrates without significant mechanical damage. In this article, the recent advancements in transferring graphene to arbitrary substrates will be extensively reviewed. The methods are categorized into mechanical exfoliation, polymer-assisted transfer, continuous transfer by roll-to-roll process, and transfer-free techniques including direct synthesis on insulating substrates.
机译:第一个微米大小的石墨烯片从石墨中提取了突出电气、机械和化学性质,但是他们太小了,实用应用程序。石墨烯合成和转让技术等各种宏观应用程序启用透明电极触屏和发光二极管(led)和薄膜柔性电子元件的晶体管特定的。对生产的努力大尺寸石墨烯的希望工业化生产石墨烯。十多年后,首次发现,石墨烯现在可以合成到30英寸的对角线尺寸使用化学蒸汽沉积方法。合成技术的进步也转移方法,实现石墨烯上目标基板没有显著的机械损害。在将石墨烯转移到任意的基质将广泛地查阅。分为机械剥落,polymer-assisted转让、连续传输精密卷绕对位技术,transfer-free技术包括直接合成绝缘基板。

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