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Polyimide-coated carbon electrodes combined with redox mediators for superior Li-O2 cells with excellent cycling performance and decreased overpotential

机译:聚酰亚胺涂层碳电极与氧化还原介体相结合可提供出色的循环性能并降低过电势从而形成优质的Li-O2电池

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摘要

We report an air electrode employing polyimide-coated carbon nanotubes (CNTs) combined with a redox mediator for Li-O2 cells with enhanced electrochemical performance. The polyimide coating on the carbon surface suppresses unwanted side reactions, which decreases the amount of accumulated reaction products on the surface of the air electrode during cycling. The redox mediators lower the overpotential of the Li-O2 cells because they can easily transfer electrons from the electrode to the reaction products. The low overpotential can also decrease the side reactions that activate at a high potential range. Specifically, the CsI redox mediator effectively interrupted dendrite growth on the Li anode during cycling due to the shielding effect of its Cs+ ions and acted as a redox mediator due to its I ions. LiNO3 also facilitates the decrease in side reactions and the stabilization of the Li anode. The synergic effect of the polyimide coating and the electrolyte containing the LiNO3/CsI redox mediator leads to a low overpotential and excellent cycling performance (over 250 cycles with a capacity of 1,500 mAh·gelectrode−1).
机译:我们报告的空气电极采用聚酰亚胺涂层的碳纳米管(CNTs)与氧化还原介体相结合的Li-O2电池具有增强的电化学性能。碳表面上的聚酰亚胺涂层可抑制有害的副反应,从而减少循环过程中空气电极表面累积的反应产物数量。氧化还原介体降低了Li-O2电池的过电势,因为它们可以轻松地将电子从电极转移到反应产物。低过电势还可以减少在高电势范围内激活的副反应。具体而言,由于其Cs + 离子的屏蔽作用,CsI氧化还原介体在循环过程中有效地中断了Li阳极上的枝晶生长,并且由于其I -离子。 LiNO 3还促进副反应的减少和Li阳极的稳定。聚酰亚胺涂层和含LiNO3 / CsI氧化还原介体的电解质的协同作用导致低电势低和优异的循环性能(超过250个循环,容量为1,500 mAh·g电极 -1 )。

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