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Dissolution Of Graphite, Graphite And Graphene Nanoribbons In Superacid Solutions And Manipulation Thereof

机译:石墨,石墨和石墨烯纳米带在超强酸溶液中的溶解及其处理

摘要

Methods for dissolving carbon materials such as, for example, graphite, graphite oxide, oxidized graphene nanoribbons and reduced graphene nanoribbons in a solvent containing at least one superacid are described herein. Both isotropic and liquid crystalline solutions can be produced, depending on the concentration of the carbon material The superacid solutions can be formed into articles such as, for example, fibers and films, mixed with other materials such as, for example, polymers, or used for functionalization of the carbon material. The superacid results in exfoliation of the carbon material to produce individual particles of the carbon material. In some embodiments, graphite or graphite oxide is dissolved in a solvent containing at least one superacid to form graphene or graphene oxide, which can be subsequently isolated. In some embodiments, liquid crystalline solutions of oxidized graphene nanoribbons in water are also described.
机译:本文描述了将碳材料例如石墨,氧化石墨,氧化的石墨烯纳米带和还原的石墨烯纳米带溶解在含有至少一种超酸的溶剂中的方法。取决于碳材料的浓度,可以产生各向同性和液晶溶液。可以将超酸溶液形成制品,例如纤维和薄膜,与其他材料例如聚合物混合,或使用用于碳材料的功能化。过酸导致碳材料剥落以产生碳材料的单个颗粒。在一些实施方案中,将石墨或氧化石墨溶解在包含至少一种超酸的溶剂中以形成石墨烯或氧化石墨烯,可随后将其分离。在一些实施方案中,还描述了氧化石墨烯纳米带在水中的液晶溶液。

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