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A core-shelled Sb@C nanorod cathode with a graphene aerogel interlayer for high-capacity aluminum ion batteries

机译:一个core-shelled Sb@C奈米棒阴极用石墨烯气凝胶层间高容量铝离子电池

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摘要

Rechargeable aluminum-ion batteries, RAIBs, as a prime candidate for next-generation batteries, have attracted much attention due to their extremely high anode capacity and good safety. However, the lack of matching high-capacity cathode materials and reasonable design limit their practical development. Herein, core-shelled Sb@C nanorods are prepared by polymer coating and thermal reduction as a metal-based cathode for RAIBs. The carbon shell and graphene aerogel interlayer effectively block the diffusion and shuttling of charging products, thus exhibiting excellent electrochemical performance. This Al-Sb battery delivers an initial discharge capacity of 656 mA h g(-1) at 100 mA g(-1), a stable discharge voltage of 0.9 V, and excellent cycling stability maintained at 306 mA h g(-1) after 500 cycles at 1 A g(-1). Serial characterizations are used to monitor the structural changes of Sb in reversible reactions and to determine the configuration of the charged products, showing that the product exists in the form of [SbCl4](+) cations, that is, a five-electron transfer reaction occurs with a very high theoretical capacity (1100 mA h g(-1)). This study sheds light on the energy storage mechanism of a metallic Sb cathode in RAIBs, and provides new insights into the study of high-capacity cathodes and the rational design of battery structures.
机译:可充电电池铝离子,RAIBs,总理候选人下一代电池,吸引了太多的关注由于他们吗非常高的阳极容量和良好的安全。然而,缺乏匹配的高容量阴极材料和合理的设计极限他们的实际发展。Sb@C纳米聚合物涂层和准备热还原为金属阴极RAIBs。层间有效地阻止扩散和穿梭于充电产品,从而展示优良的电化学性能。电池的初始放电容量马马656 h g(1)在100 g(1),一个稳定的放电电压为0.9 V,优秀的自行车稳定保持在306毫安h g(1) 500年之后周期1 g(1)。用于监视某人的结构性变化可逆反应和确定带电的配置产品,展示产品存在的形式(SbCl4) (+)阳离子,即5电子转移反应发生在一个很高的理论产能(1100 mA h g(1))。光的能量存储机制金属在RAIBs某人阴极,并提供新的深入研究高容量的阴极和电池结构的合理设计。

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