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首页> 外文期刊>Journal of Materials Chemistry, A. Materials for energy and sustainability >From graphite to graphene; direct liquid-phase exfoliation of graphite to produce single-and fewlayered pristine graphene
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From graphite to graphene; direct liquid-phase exfoliation of graphite to produce single-and fewlayered pristine graphene

机译:从石墨到石墨烯;石墨直接液相剥离产生单层和很少层的原始石墨烯

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摘要

Graphene, a two-dimensional crystalline form of carbon, has attracted wide and intense interest owing to its excellent physical properties and because its surface and edges can be chemically modified readily. Development of a method for producing high-quality graphene in large quantities is essential for further investigation of its properties and applications. The direct liquid-phase exfoliation of graphite to produce graphene is a convenient method for generating ideal graphene samples in large quantities. This direct method, which involves the use of colloidal suspensions, is based on the one-step physical transformation of graphite into graphene and has many unique advantages. A large number of liquids have been employed as exfoliation media and show a range of exfoliation efficiencies. In this review, we highlight the recent progress made on the exfoliation of bulky graphite powders or flakes into single-and few-layered graphene sheets in various liquids, including organic solvents, ionic liquids, and water/surfactant solutions. The qualities and yields of the exfoliated graphene samples, as well as their use in various applications, are also reviewed. Furthermore, future research directions for the development of novel exfoliation media and more efficient techniques for producing well-exfoliated pristine graphene are proposed.
机译:石墨烯是碳的二维晶体形式,由于其优异的物理性能以及其表面和边缘易于化学修饰而引起了广泛的关注。开发大量生产高质量石墨烯的方法对于进一步研究其性能和应用至关重要。石墨直接液相剥离生产石墨烯是一种方便的方法,可用于大量生成理想的石墨烯样品。这种直接方法涉及使用胶体悬浮液,该方法基于将石墨一步转化为石墨烯的物理方法,具有许多独特的优势。大量液体已被用作剥落介质,并显示出一系列的剥落效率。在这篇综述中,我们重点介绍了在各种液体(包括有机溶剂,离子液体和水/表面活性剂溶液)中将大块石墨粉末或薄片剥离成单层和多层石墨烯片材方面的最新进展。还对片状石墨烯样品的质量和产率及其在各种应用中的用途进行了综述。此外,提出了新的剥落介质的开发和更有效的技术来生产充分剥落的原始石墨烯的未来研究方向。

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