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首页> 外文期刊>Chemical engineering journal >Fabrication of free-standing graphene oxide films using a facile approach toluene swollen paraffin peeling and green reduction of these films into highly conductive reduced graphene oxide films
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Fabrication of free-standing graphene oxide films using a facile approach toluene swollen paraffin peeling and green reduction of these films into highly conductive reduced graphene oxide films

机译:使用容纳方法甲苯溶胀的石蜡剥离和将这些薄膜的绿色还原成高导电的石墨烯氧化物膜的固定式石墨烯氧化物膜的制造

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摘要

Free-standing films of graphene oxide (GO) are regarded as potential materials for numerous applications in different fields. However, fabricating macroscopic free-standing GO films with high throughput is a bottleneck in large-scale application of these films. Here we introduce a method suitable for the mass-scale fabrication of freestanding GO films by exploring paraffin film (Parafilm M (R)) as a sacrificial substrate. The method involves deposition of GO on a paraffin film and peeling of the paraffin film after swelling it with toluene to obtain freestanding film of GO. Furthermore, the GO films were reduced into highly conductive RGO films using a green reducing agent ascorbic acid. A strategy of treating GO films with CuSO4 solution prior to reduction is also designed to avoid the possible disintegration of GO films in ascorbic acid solution. A detailed comparative study on the properties of RGO films prepared via thermal and chemical treatment and through the combination of both is also reported. An investigation of the variation in the electrical conductivity of the RGO films based on the reduction method is also carried out. The hydrophobic nature of the thermally reduced RGO films is explored for the oil/ water separation.
机译:石墨烯(GO)的自卸薄膜被认为是不同领域的许多应用的潜在材料。然而,制造具有高吞吐量的宏观自由展示胶片是大规模应用这些薄膜的瓶颈。在这里,我们介绍一种适用于通过探索石蜡膜(Parafilm M(R))作为牺牲基质来绘制独立式Go膜的法规制造的方法。该方法涉及在用甲苯溶胀后沉积去脱落的石蜡膜和石蜡膜的剥离,以获得独立式的GO膜。此外,使用绿色还原剂抗坏血酸将GO膜降低到高导电rgo膜中。还设计了用CUSO4解决方案处理GO膜的策略,也旨在避免在抗坏血酸溶液中可能崩解。还报道了通过热化和化学处理和两者组合制备的Rgo膜性能的详细比较研究。还进行了基于还原方法的Rgo膜的导电率的变化的研究。探索了热量减少的Rgo膜的疏水性,用于油/水分离。

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