首页> 外文会议>Materials Research Society Symposium DD on De Novo Carbon Nanomaterials >Conductivity of Graphene-Like Thin Films Prepared from Chemically Exfoliated Carbon Nanotubes (CNTs), Highly Oriented Pyrolytic Graphite (HOPG), Natural Flake Graphite, and Carbon Powder
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Conductivity of Graphene-Like Thin Films Prepared from Chemically Exfoliated Carbon Nanotubes (CNTs), Highly Oriented Pyrolytic Graphite (HOPG), Natural Flake Graphite, and Carbon Powder

机译:石墨烯样薄膜的电导率由化学剥离碳纳米管(CNT),高度取向的热解石墨(HOPG),天然薄片石墨和碳粉制备

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The use of super acids such as chlorosulfonic acid (CSA) has proven to be extremely effective at exfoliating different forms of graphite in high concentrations without covalently functionalizing the surface of the graphene. Once quenched, the acid solutions can then be vacuum filtered through acid resistant polypropylene filter paper with an average pore size of 0.2 μm to collect the exfoliated carbon into a free standing retentate film. These films can then be easily washed, removed, and redispersed into solution by sonicating the films in a surfactant solution. Films were deposited onto various substrates using a range of spin coating parameters. This study has found that exfoliated CNTs provide the best conductivity out of the four types of chemically exfoliated carbon structures studied. CNTs have also proven to be the easiest type of exfoliated carbon to disperse and are able to stay in solution with less than 1%wt surfactant. The findings have shown that the electrical conductivity of the spin coated films actually increases with RPM and is inversely proportional to the film thickness. It is possible to achieve electrical conductivities as high as 10,507 ± 3728.64 [S/m] while still maintaining the transparency of the thin films. The initial spin coating step is more efficient at low ramp rates around 100 rpm/s and results in very smooth films. High spin speeds of 1800 rpm during the casting stage are found to play a large role in improving the conductivity of the films. Lastly, drying the samples on a hot plate for 5 min. on high has significantly improved the films electrical properties and virtually eliminated the need for tedious and expensive plasma cleaning treatments.
机译:已经证明使用如氯磺酸(CSA)如氯磺酸(CSA)的使用,在高浓度下剥离不同形式的石墨,而无需共价官能化石墨烯表面。一旦淬火,酸溶液就可以通过耐酸的聚丙烯滤纸真空过滤,其平均孔径为0.2μm以将剥离的碳收集到自由静止的滞留膜中。然后可以通过在表面活性剂溶液中超声处理膜来容易地洗涤,除去这些薄膜并将其重新分离。使用一系列旋涂参数将薄膜沉积在各种基材上。该研究发现,剥蚀的CNT提供了所研究的四种化学剥离碳结构的最佳电导率。 CNT也被证明是最容易的剥离碳的碳酸碳,并且能够保持溶液,含有小于1%的WT表面活性剂。研究结果表明,旋涂膜的电导率实际上随着RPM增加并且与膜厚度成反比。可以实现高达10,507±3728.64 [S / M]的电导率,同时仍保持薄膜的透明度。初始旋转涂层步骤在100 rpm / s的低斜坡速率下更有效,并导致非常光滑的薄膜。在铸造阶段期间,在铸造阶段的高旋转速度为1800 rpm在提高薄膜的电导率方面发挥着重要作用。最后,在热板上干燥样品5分钟。在高处显着改善了电气性能,几乎消除了对繁琐且昂贵的等离子体清洁处理的需求。

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