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首页> 外文期刊>Electrochimica Acta >Stainless steel as low-cost high-voltage cathode via stripping/deposition in metal-lithium battery
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Stainless steel as low-cost high-voltage cathode via stripping/deposition in metal-lithium battery

机译:不锈钢作为低成本高压阴极通过剥离/沉积在金属锂电池中

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Despite advances in traditional lithium-ion batteries in the past decades, its high cost has always been a bottleneck for large-scale applications. In this work, we demonstrate it is possible to replace expensive cathodes such as LiCoO2 with inexpensive stainless steel to store energy via a stripping/deposition mechanism: during charging, the stainless-steel cathode removes charges by releasing metal ions into the electrolyte, and during discharge, the metal ions re-deposit on the electrode reversibly. An anion exchange membrane allows passage of anions to balance the charge and prevents cross-over of cations. We show here a battery with a stainless-steel cathode and a lithium metal anode with a high discharge voltage of 2.5 V and good reversibility. We also study the mechanism at the stainless-steel electrode, as well as the kinetics of the battery system. Our work can potentially reduce the cost of energy storage by turning common construction materials into cathode materials. In addition, a metal cathode undergoing stripping/deposition gives a theoretical energy density comparable to lithium-sulfur batteries and provides a new exciting direction for future energy storage development. (C) 2018 Elsevier Ltd. All rights reserved.
机译:尽管在过去几十年中,传统锂离子电池的进步,但其高成本始终是大型应用的瓶颈。在这项工作中,我们证明了可以用廉价的不锈钢替换诸如LiCoO2的昂贵的阴极,以通过剥离/沉积机构存储能量:在充电期间,不锈钢阴极通过将金属离子释放到电解质中而去除电荷,以及在电解质中去除电荷。放电,金属离子可逆地在电极上重新沉积。阴离子交换膜允许阴离子通过以平衡充电并防止交叉阳离子。我们在这里展示了一种带不锈钢阴极的电池和锂金属阳极,高放电电压为2.5 V和良好的可逆性。我们还研究了不锈钢电极的机制,以及电池系统的动力学。我们的工作可以通过将普通建筑材料转化为阴极材料来潜在地降低能量存储成本。此外,经过剥离/沉积的金属阴极给出了与锂 - 硫电池相当的理论能量密度,并为未来的能量存储开发提供了一种新的令人兴奋的方向。 (c)2018年elestvier有限公司保留所有权利。

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