【2h】

Controllable fabrication of ultrathin free-standing graphene films

机译:超薄自支撑石墨烯薄膜的可控制备

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摘要

Graphene free-standing film-like or paper-like materials have attracted great attention due to their intriguing electronic, optical and mechanical properties and potential application in chemical filters, molecular storage and supercapacitors. Although significant progress has been made in fabricating graphene films or paper, there is still no effective method targeting ultrathin free-standing graphene films (UFGFs). Here, we present a modified filtration assembly method to prepare these ultrathin films. With this approach, we have fabricated a series of ultrathin free-standing graphene oxide films and UFGFs, up to 40 mm in diameter, with controllable thickness from micrometre to nanoscale (approx. 40 nm) dimensions. This method can be easily scaled up and the films display excellent optical, electrical and electrochemical properties. The ability to produce UFGFs from graphene oxide with a scalable, low-cost approach should take us a step closer to real-world applications of graphene.
机译:石墨烯的独立膜状或纸状材料因其吸引人的电子,光学和机械性能以及在化学过滤器,分子存储和超级电容器中的潜在应用而备受关注。尽管在制造石墨烯薄膜或纸方面已取得重大进展,但仍然没有针对超薄自支撑石墨烯薄膜(UFGF)的有效方法。在这里,我们提出了一种改进的过滤组装方法来制备这些超薄膜。通过这种方法,我们制造了一系列超薄的自支撑氧化石墨烯薄膜和UFGF,其直径最大为40 mm,厚度可控制在微米到纳米级(约40)nm)的范围内。此方法可以轻松按比例放大,并且薄膜显示出优异的光学,电和电化学性能。以可扩展的低成本方法从氧化石墨烯生产UFGF的能力应该使我们更接近石墨烯的实际应用。

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