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Metal-organic framework-derived metal oxide nanoparticles@reduced graphene oxide composites as cathode materials for rechargeable aluminium-ion batteries

机译:金属 - 有机骨架 - 衍生的金属氧化物纳米颗粒 - 将石墨烯氧化物复合物还原为可再充电铝离子电池的阴极材料

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The use of metal oxides as electrode materials has seen great success in lithium-ion batteries. However, this type of electrode materials has been regarded as an improper option for rechargeable aluminium-ion batteries (AIBs) in comparison with sulfides and selenides, and has, thus, been nearly abandoned. Here, we demonstrate the suitability of metal oxides as cathode materials of AIBs, exhibiting high electrochemical activities toward Al-ion storage. We designed economical metal-oxide cathodes (Cosub3/subOsub4/sub@reduced graphene oxide (rGO), Fesub2/subOsub3/sub@rGO, and CoFesub2/subOsub4/sub@rGO) for AIBs. The Cosub3/subOsub4/sub@rGO displayed superior electrochemical properties, regarding both capacity and lifespan, to the current state-of-the-art cathode material reported by scientific literature. Furthermore, the CoFesub2/subOsub4/sub@rGO exhibits rational electrochemical capacities and an extremely stable charge/discharge process with an excellent Coulombic efficiency of 99.6%. The proposed study expects to stimulate researchers to focus on the overlooked metal oxides as competitive cathode materials for high performance AIBs.
机译:金属氧化物作为电极材料的使用在锂离子电池中已经取得了巨大的成功。 However, this type of electrode materials has been regarded as an improper option for rechargeable aluminium-ion batteries (AIBs) in comparison with sulfides and selenides, and has, thus, been nearly abandoned.在这里,我们证明了金属氧化物作为AIB的阴极材料的适用性,表现出朝向Al离子储存的高电化学活性。我们设计了经济型金属氧化物阴极(CO 3 O 4 @ redux氧化物氧化物(RGO),Fe 2 0 3 @Rgo和Cofe 2 O 4 @rgo)for aibs。 CO 3 O 4 @rgo显示出对电容和寿命的卓越的电化学性质,以通过科学文献报告的当前最先进的阴极材料。此外,CoFe 2 O 4 @rgo表现出合理的电化学能力和极其稳定的充电/放电过程,具有优异的库仑效率为99.6%。拟议的研究预计刺激研究人员将专注于被忽视的金属氧化物作为高性能AIB的竞争阴极材料。

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