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Graphene-based materials and their composites: A review on production, applications and product limitations

机译:石墨烯基材料及其复合材料:关于生产,应用和产品局限性的综述

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摘要

Recent years have perceived many innovations in research and advancement of graphene, the thinnest twodimensional atomic material. Graphene-based materials and their composites possess promising applications in wide range of fields such as, electronics, biomedical aids, membranes, flexible wearable sensors and actuators. The latest studies and progression in this subject area often produce inconsistent or inconclusive results. This review article assesses and summarises published data so as to provide a critical and comprehensive overview of state of the art Firstly, the distinct structural nature of the graphene materials available is elucidated, as well as different production techniques available thus far. The assessment then discusses the various composites focusing different sub-functional regimes such as mechanical and collective functional applications such as energy, electronics biomedical, membranes and sensors. The utilisation of graphene and its derivatives in the manufacture of nanocomposites with different polymer matrices has been reconnoitred. Finally, a conclusion and perspective are given to discussing the remaining challenges for graphene nanocomposites in functional science and engineering.
机译:近年来,人们在石墨烯(最薄的二维原子材料)的研究和发展中发现了许多创新。石墨烯基材料及其复合材料在电子,生物医学辅助,膜,柔性可穿戴传感器和执行器等广泛领域具有广阔的应用前景。该学科领域的最新研究和进展通常会产生不一致或不确定的结果。这篇综述文章评估并总结了已发表的数据,以便对现有技术进行全面而全面的概述。首先,阐明了现有石墨烯材料的独特结构性质,以及迄今为止可用的不同生产技术。然后,评估讨论了各种复合材料,这些复合材料侧重于不同的子功能体系,例如机械和集体功能应用,例如能源,电子生物医学,膜和传感器。已经重新考虑了石墨烯及其衍生物在具有不同聚合物基质的纳米复合材料的制造中的利用。最后,给出结论和观点来讨论功能科学和工程学中石墨烯纳米复合材料的剩余挑战。

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