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首页> 外文期刊>Indian Journal of Pure & Applied Physics >A comparative study of organic solvents, ionic liquids, surfactants and acids for liquid phase exfoliation of graphene
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A comparative study of organic solvents, ionic liquids, surfactants and acids for liquid phase exfoliation of graphene

机译:石墨烯液相剥离中有机溶剂,离子液体,表面活性剂和酸的比较研究

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摘要

Graphene is the most widely investigated carbon nanomaterial having two-dimensional honeycomb lattice structure. Recently, it has attracted worldwide attention due to its remarkable electrical, thermal, mechanical, chemical and optical properties, which are highly suitable for various electronic device applications. Various methods of graphene synthesis have been utilized for the production of graphene each having its own advantages and disadvantages. Liquid phase exfoliation method uses top-down approach and has the advantages of being environment friendly, facile and economically viable. Liquid phase exfoliated graphene is highly suitable for making thin films for their potential applications in electronic devices such as thin films transistors, transparent electrodes, light-emitting diodes, supercapacitors, etc. In this paper, a comparative study of different exfoliation medium used for liquid phase exfoliation of graphene such as organic solvents, ionic liquids, surfactants, polymers and acids are described. Because of the usually low concentration of graphene ( 0.01 mg/mL) obtained from liquid phase exfoliation method, research has been done for enhancing the concentration. Recent progress made in enhancing graphene concentration in organic solvents by adding various additives is reported here. Finally, we discuss the challenges and future prospects of improving liquid phase exfoliation of graphene for modern electronics devices.
机译:石墨烯是研究最广泛的具有二维蜂窝状晶格结构的碳纳米材料。最近,由于其卓越的电,热,机械,化学和光学特性,它已引起了全世界的关注,这些特性非常适合各种电子设备应用。已经使用各种石墨烯合成方法来生产石墨烯,每种方法具有其自身的优点和缺点。液相剥落法采用自上而下的方法,具有环保,简便和经济可行的优点。液相剥落的石墨烯非常适合用于制造薄膜,因为其在电子设备中具有潜在的应用前景,例如薄膜晶体管,透明电极,发光二极管,超级电容器等。本文对用于液体的各种剥落介质进行了比较研究描述了石墨烯的相剥离,例如有机溶剂,离子液体,表面活性剂,聚合物和酸。由于石墨烯的浓度通常较低通过液相剥落法获得的<0.01 mg / mL(<0.01 mg / mL),已经进行了提高浓度的研究。本文报道了通过添加各种添加剂来提高有机溶剂中石墨烯浓度的最新进展。最后,我们讨论了改善现代电子设备中石墨烯的液相剥离的挑战和未来前景。

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