最近Stefano Passerini教授和Bruno Scrosati教授作为共同的通讯作者在nature materials上发表了名为“The role of graphene for electrochemical energy storage”的综述文章,对最近十年石墨烯在电化学能量储存方面所扮演的角色做了一次全面而又深刻的评述。全文共9页,参考文献100篇。
自从在2004成功制备后,石墨烯已经成为材料研究领域中的最热话题之一,并且它的高度吸引人研究兴趣的特殊功能性质引发了大量科技论文的发表。在众多被石墨烯影响的研究领域中,电化学能源储存也毫无疑问地被这种“石墨烯热”所深深影响。尽管吸引了全世界范围内的极大研究热情,但是石墨烯能否真正地促进这个领域的发展仍然不可得知。在这篇文章中,作者谈论了石墨烯作为活化材料和惰性成分在一些领域的研究进展,比如从锂离子电池和电化学超级电容器这些传统研究领域到金属-氧气、镁离子电池这些新兴的研究方向。通过对目前最优技术的关键分析,作者阐述了石墨烯相关材料的一些优势和不足,并且也着重概述了迄今为止最有前途的一些研究结果和应用。
Since its first isolation in 2004, graphene has become one of the hottest topics in the field of materials science, and its highly appealing properties have led to a plethora of scientific papers. Among the many affected areas of materials science, this 'graphene fever' has influenced particularly the world of electrochemical energy-storage devices. Despite widespread enthusiasm, it is not yet clear whether graphene could really lead to progress in the field. Here we discuss the most recent applications of graphene — both as an active material and as an inactive component — from lithium-ion batteries and electrochemical capacitors to emerging technologies such as metal–air and magnesium-ion batteries. By critically analysing state-of-the-art technologies, we aim to address the benefits and issues of graphene-based materials, as well as outline the most promising results and applications so far.![Nature Materials 最新综述:石墨烯在电化学能量储存方面的重要作用]()
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