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Lateral assembly of oxidized graphene flakes into large-scale transparent conductive thin films with a three-dimensional surfactant 4-sulfocalix4arene

机译:氧化石墨烯薄片的横向组装成具有三维表面活性剂4-磺胺基4芳烃的大规模透明导电薄膜

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摘要

Graphene is a promising candidate material for transparent conductive films because of its excellent conductivity and one-carbon-atom thickness. Graphene oxide flakes prepared by Hummers method are typically several microns in size and must be pieced together in order to create macroscopic films. We report a macro-scale thin film fabrication method which employs a three-dimensional (3-D) surfactant, 4-sulfocalix[4]arene (SCX), as a lateral aggregating agent. After electrochemical exfoliation, the partially oxidized graphene (oGr) flakes are dispersed with SCX. The SCX forms micelles, which adsorb on the oGr flakes to enhance their dispersion, also promote aggregation into large-scale thin films under vacuum filtration. A thin oGr/SCX film can be shaved off from the aggregated oGr/SCX cake by immersing the cake in water. The oGr/SCX thin-film floating on the water can be subsequently lifted from the water surface with a substrate. The reduced oGr (red-oGr) films can be as thin as 10−20 nm with a transparency of >90% and sheet resistance of 890 ± 47 kΩ/sq. This method of electrochemical exfoliation followed by SCX-assisted suspension and hydrazine reduction, avoids using large amounts of strong acid (unlike Hummers method), is relatively simple and can easily form a large scale conductive and transparent film from oGr/SCX suspension.
机译:石墨烯因其出色的导电性和一个碳原子的厚度而成为透明导电膜的有希望的候选材料。通过悍马方法制备的氧化石墨烯薄片通常为几微米大小,并且必须拼在一起以形成宏观的膜。我们报告了一种大规模的薄膜制造方法,该方法采用了三维(3-D)表面活性剂4-磺基lix [4]芳烃(SCX)作为横向聚集剂。电化学剥离后,将部分氧化的石墨烯(oGr)薄片用SCX分散。 SCX形成胶束,该胶束吸附在oGr薄片上以增强其分散性,并在真空过滤下还促进聚集成大规模薄膜。将一块饼浸入水中,可以将一层薄的oGr / SCX薄膜从聚集的oGr / SCX饼上刮下来。随后可以用基材将浮在水面上的oGr / SCX薄膜从水表面提起。还原的oGr(red-oGr)膜可以薄至10-20 nm,透明度> 90%,薄层电阻为890±47kΩ/ sq。这种电化学剥离的方法随后是SCX辅助的悬浮液和肼还原反应,避免使用大量的强酸(与Hummers方法不同),相对简单,并且可以轻松地由oGr / SCX悬浮液形成大规模的导电透明薄膜。

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