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Sublimation-assisted graphene transfer technique based on small polyaromatic hydrocarbons

机译:基于小型多芳烃的升华辅助石墨烯转移技术

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摘要

Advances in the chemical vapor deposition (CVD) growth of graphene have made this material a very attractive candidate for a number of applications including transparent conductors, electronics, optoeletronics, biomedical devices and energy storage. The CVD method requires transfer of graphene on a desired substrate and this is most commonly accomplished with polymers. The removal of polymer carriers is achieved with organic solvents or thermal treatment which makes this approach inappropriate for application to plastic thin films such as polyethylene terephthalate substrates. An ultraclean graphene transfer method under mild conditions is highly desired. In this article, we report a naphthalene-assisted graphene transfer technique which provides a reliable route to residue-free transfer of graphene to both hard and flexible substrates. The quality of the transferred graphene was characterized with atomic force microscopy, scanning electron microscopy, and Raman spectroscopy. Field effect transistors, based on the naphthalene-transfered graphene, were fabricated and characterized. This work has the potential to broaden the applications of CVD graphene in fields where ultraclean graphene and mild graphene transfer conditions are required.
机译:石墨烯的化学气相沉积(CVD)生长的进步使得该材料成为许多应用的非常有吸引力的候选者,包括透明导体,电子器件,光学仪,生物医学装置和能量储存。 CVD方法需要将石墨烯转移在所需的基材上,并且通常用聚合物常用。通过有机溶剂或热处理实现聚合物载体的除去,这使得这种方法不适当地应用于塑料薄膜,例如聚对苯二甲酸乙二醇酯基材。非常需要在温和条件下的超薄石墨烯转移方法。在本文中,我们报告了萘辅助石墨烯转移技术,其提供了可靠的石墨烯与硬质和柔性基材的无残基转移的途径。转移的石墨烯的质量表征着原子力显微镜,扫描电子显微镜和拉曼光谱。基于萘转移的石墨烯的场效应晶体管被制造和表征。这项工作有可能扩大CVD石墨烯在需要超薄石墨烯和温和石墨烯转移条件的领域中的应用。

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