...
首页> 外文期刊>ACS applied materials & interfaces >Suppressing Corrosion of Aluminum Foils via Highly Conductive Graphene-like Carbon Coating in High-Performance Lithium-Based Batteries
【24h】

Suppressing Corrosion of Aluminum Foils via Highly Conductive Graphene-like Carbon Coating in High-Performance Lithium-Based Batteries

机译:在高性能锂基电池中通过高导电石墨烯样碳涂层抑制铝箔的腐蚀

获取原文
获取原文并翻译 | 示例
   

获取外文期刊封面封底 >>

       

摘要

Aluminum foil is the predominant cathodic current collector in lithium-based batteries due to the high electronic conductivity, stable chemical/electrochemical properties, low density, and low cost. However, with the development of next-generation lithium batteries, Al current collectors face new challenges, such as the requirement of increased chemical stability at high voltage, long-cycle-life batteries with different electrolyte systems, as well as improved electronic conductivity and adhesion for new electrode materials. In this study, we demonstrate a novel graphene-like carbon (GLC) coating on the Al foil in lithium-based batteries. Various physical and electrochemical characterizations are conducted to reveal the electronic conductivity and electrochemical stability of the GLC-Al foil in both carbonate- and ether-based electrolytes. Full-cell tests, including Li-S batteries and high-voltage Li-ion batteries, are performed to demonstrate the significantly improved cycling and rate performance of batteries with the use of the GLC-Al foil as current collectors. The cell using the GLC-Al foil can greatly reduce the potential polarization in Li-S batteries and can obtain a reversible capacity of 750 mAh g(-1) over 100 cycles at 0.5C. Even with high-sulfur-loading cathodes, the Li-S battery at 1C still maintains over 500 mAh g-1 after 100 cycles. In high-voltage Li-ion batteries, the GLC-Al foil significantly improves the high-rate performance, showing an increased retained capacity by over 100 mAh g(-1) after 450 cycles at 1C compared to the bare foil. It is believed that the developed GLC-Al foil brings new opportunities to enhance the battery life of lithium-based batteries.
机译:铝箔是由于高电子导电性,稳定的化学/电化学性能,低密度和低成本,基于锂基电池的主要阴极集电器。然而,随着下一代锂电池的发展,Al Contram Coltultors面临着新的挑战,例如在高压,长循环寿命电池中提高化学稳定性,具有不同电解质系统的需求,以及改善的电子导电性和粘附性用于新电极材料。在这项研究中,我们在锂基电池的Al箔上展示了一种新的石墨烯碳(GLC)涂层。进行各种物理和电化学表征以揭示碳酸醚和醚电解质中GLC-Al箔的电子电导率和电化学稳定性。在包括LI-S电池和高压锂离子电池的全牢房测试,以证明使用GLC-AL箔作为集电器的电池显着改善的循环和速率性能。使用GLC-Al箔的电池可以大大降低Li-S电池中的潜在极化,并且可以在0.5℃下获得超过100个循环的750mAhg(-1)的可逆容量。即使具有高硫加载阴极,1C的Li-S电池仍然在100次循环后保持超过500mAh的G-1。在高压锂离子电池中,GLC-Al箔显着提高了高速率性能,显示与裸箔相比,在1C的450次循环后通过超过100mAhg(-1)增加的保留容量。据信,发达的Glc-Al箔有新的机会来提高锂基电池的电池寿命。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号