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首页> 外文期刊>Journal of Energy Storage >Nanostructured graphene materials utilization in fuel cells and batteries: A review
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Nanostructured graphene materials utilization in fuel cells and batteries: A review

机译:纳米结构石墨烯材料利用燃料电池和电池:综述

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摘要

Energy demand is increasing in the present world where it is essential to explore alternative energy resource that is clean, renewable and sustainable. Graphene is now receiving the great attention as it possesses excellent properties such as high charge mobility up to 230,000 cm(2)/Vs, 3000 W/m.K thermal conductivity, 2.3% absorption of visible light, strong mechanical strength of 130 GPa and high specific surface area of 2600 m(2)/g. These properties can be altered depending on synthesis techniques to obtain graphene such as; mechanical exfoliation, reduction of graphene oxide, chemical vapour deposition (CVD) and epitaxial growth of graphene. Furthermore, different characteristics of graphene can be employed for different applications in energy conversion and storage, for example, fuel cell and lithium ion battery. Hence, many studies were investigated to examine graphene and its applications. The objectives of this review is to understand and cover graphene background including properties and synthesis, which will help in understanding better the concept of graphene in its application such as in fuel cell and lithium ion batteries. In addition, it is showing the most key challenges and future consideration when nanostructured graphene is utilized.
机译:当今的能源需求正在增加,探索清洁,可再生和可持续的替代能源资源至关重要。石墨烯现在接受了极好的关注,因为它具有优异的性能,如高电荷迁移率,高达230,000厘米(2)/ vs,3000W / MK导热率,可见光吸收2.3%,机械强度强130gPa和高特异性表面积为2600米(2)/ g。可以根据合成技术改变这些性质以获得石墨烯(例如);机械剥离,氧化石墨烯的还原,化学气相沉积(CVD)和石墨烯外延生长。此外,石墨烯的不同特性可用于在能量转换和储存中的不同应用,例如燃料电池和锂离子电池。因此,研究了许多研究以检查石墨烯及其应用。本综述的目标是了解和涵盖石墨烯背景,包括物业和综合,这将有助于了解其在其应用中的更好的石墨烯概念,例如燃料电池和锂离子电池。此外,当使用纳米结构石墨烯时,它显示出最关键的挑战和未来考虑。

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