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Synthesis of Large Area Graphene for High Performance in Flexible Optoelectronic Devices

机译:柔性光电器件中高性能高性能大面积石墨烯的合成

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摘要

This work demonstrates an attractive low-cost route to obtain large area and high-quality graphene films by using the ultra-smooth copper foils which are typically used as the negative electrodes in lithium-ion batteries. We first compared the electronic transport properties of our new graphene film with the one synthesized by using commonly used standard copper foils in chemical vapor deposition (CVD). We observed a stark improvement in the electrical performance of the transistors realized on our graphene films. To study the optical properties on large area, we transferred CVD based graphene to transparent flexible substrates using hot lamination method and performed large area optical scanning. We demonstrate the promise of our high quality graphene films for large areas with ~400 cm2 flexible optical modulators. We obtained a profound light modulation over a broad spectrum by using the fabricated large area transparent graphene supercapacitors and we compared the performance of our devices with the one based on graphene from standard copper. We propose that the copper foils used in the lithium-ion batteries could be used to obtain high-quality graphene at much lower-cost, with the improved performance of electrical transport and optical properties in the devices made from them.
机译:这项工作展示了一种有吸引力的低成本途径,即通过使用通常用作锂离子电池负极的超光滑铜箔来获得大面积,高质量的石墨烯薄膜。我们首先将新的石墨烯薄膜的电子传输性能与通过在化学气相沉积(CVD)中使用常用的标准铜箔合成的薄膜进行了比较。我们观察到在我们的石墨烯薄膜上实现的晶体管的电气性能有了明显改善。为了研究大面积的光学特性,我们使用热层压方法将基于CVD的石墨烯转移到透明柔性基板上,并进行大面积光学扫描。我们展示了高质量的石墨烯薄膜在约400 withcm 2 柔性光学调制器上的应用前景。通过使用制造的大面积透明石墨烯超级电容器,我们在广谱范围内获得了深刻的光调制,并且我们将器件的性能与基于标准铜的石墨烯的器件进行了比较。我们提出,锂离子电池中使用的铜箔可用于以更低的成本获得高质量的石墨烯,并改善由其制成的器件的电传输性能和光学性能。

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