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Graphene: A Cathode Material of Choice for Aluminum-Ion Batteries

机译:石墨烯:铝离子电池选择的阴极材料

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摘要

The pairing of an aluminum anode with a cathode of high energy and power density determines the future of aluminum-ion battery technology. The question isIs there any suitable cathode material which is capable of storing sufficiently large amount of trivalent aluminum-ions at relatively higher operating potential?". Graphene emerges to be a fitting answer. Graphene emerged in the research arena of aluminum-ion battery merely three years ago. However, research progress in this front has since been tremendous. Outperforming all other known cathode materials, several remarkable breakthroughs have been made with graphene, in offering extraordinary energy density, power density, cycle life, thermal stability, safety and flexibility. The future of the Al-graphene couple is indeed bright. This Minireview highlights the electrochemical performances, advantages and challenges of using graphene as the cathode in aluminum-ion batteries in conjugation with chloroaluminate based electrolytes. Additionally, the complex mechanism of charge storage in graphene is also elaborated.
机译:具有高能和功率密度的阴极的铝阳极的配对决定了铝离子电池技术的未来。问题是存在任何合适的阴极材料,其能够在相对较高的运行电位下存储足够大量的三价铝 - 离子?“。石墨烯出现是一个适合的答案。石墨烯仅仅是铝离子电池的研究领域的三个多年前。然而,此前的研究进展已经巨大。优于所有其他已知的阴极材料,具有石墨烯的几种显着突破,提供了非凡的能量密度,功率密度,循环寿命,热稳定性,安全性和柔韧性。 Al-Graphene夫妇的未来确实是明亮的。该Minireview突出了使用石墨烯作为铝离子电池中的阴极的电化学性能,优点和挑战与氯铝酸氢酸的电解质共轭。另外,石墨烯中的电荷储存机理复杂机理也阐述。

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