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Graphene-based nanocomposites for energy storage and conversion in lithium batteries, supercapacitors and fuel cells

机译:石墨烯基纳米复合材料,用于锂电池,超级电容器和燃料电池中的能量存储和转换

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摘要

Due to their unique properties, together with their ease of synthesis and functionalization, graphene-based materials have been showing great potential in energy storage and conversion. These hybrid structures display excellent material characteristics, including high carrier mobility, faster recombination rate and long-time stability. In this review, after a short introduction to graphene and its derivatives, we summarize the recent advances in the synthesis and applications of graphene and its derivatives in the fields of energy storage (lithium ion, lithium-air, lithium-sulphur batteries and supercapacitors) and conversion (oxygen reduction reaction for fuel cells). This article further highlights the working principles and problems hindering the practical applications of graphene-based materials in lithium batteries, supercapacitors and fuel cells. Future research trends towards new methodologies to the design and the synthesis of graphene-based nanocomposite with unique architectures for electrochemical energy storage and conversion are also proposed. The Royal Society of Chemistry.
机译:由于其独特的性能以及易于合成和功能化的优势,石墨烯基材料在储能和转化方面已显示出巨大潜力。这些杂化结构显示出优异的材料特性,包括高载流子迁移率,更快的重组速率和长期稳定性。在这篇综述中,在对石墨烯及其衍生物进行了简短介绍之后,我们总结了石墨烯及其衍生物在储能领域(锂离子,锂空气,锂硫电池和超级电容器)的合成和应用的最新进展。和转化(燃料电池的氧还原反应)。本文还将重点介绍阻碍石墨烯基材料在锂电池,超级电容器和燃料电池中实际应用的工作原理和问题。还提出了对具有独特的电化学能量存储和转化结构的石墨烯基纳米复合材料进行设计和合成的新方法论的未来研究趋势。皇家化学学会。

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