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Microcrystalline copper foil as a high performance collector for lithium-ion batteries

机译:微晶铜箔作为锂离子电池的高性能集电器

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A novel ultrasonic peening technique was developed to obtain a special copper foil with microcrystalline morphology surface. The obtained microcrystalline Cu-graphite electrode displays better conductivity, higher bonding strength with graphite particles, and stronger corrosion resistance to the electrolyte than the pristine copper foil, which lead to its superior lithium storage performance. The initial charging capacities of Cu-graphite/Li electrodes with ultrasonic peening times of 9 s and 15 s are as high as 312.4 and 359.5 mAh g(-1), respectively, which are much higher than those of a pristine Cu-graphite electrode (282.3 mAh g(-1)). After 380 cycles, the discharging capacities remain at 239.0 and 332.8 mAh g(-1) with capacity retentions of 76.5% and 92.6%, respectively, which are also much higher than those of the pristine Cu-graphite electrode (187.6 mAh g(-1) and 66.4% after 270 cycles, respectively). After ultrasonic peening on the copper foil surface, the capacity, cycling and rate performance of the Cu-graphite electrode are greatly improved in both a Cu-graphite/Li half battery and an LiNi0.8Co0.1Mn0.1/Cu-graphite full battery, which would providing a new idea for the development of large-capacity and long-life electrode collector materials for lithium-ion batteries.
机译:开发了一种新型的超声波喷丸技术,以获得具有微晶形态表面的特殊铜箔。与原始铜箔相比,所获得的微晶Cu-石墨电极表现出更好的导电性,与石墨颗粒的更高的结合强度以及对电解质的更强的耐腐蚀性,这导致其优异的锂存储性能。超声锤击时间为9 s和15 s的Cu-石墨/ Li电极的初始充电容量分别高达312.4和359.5 mAh g(-1),远高于原始Cu-石墨电极的初始充电能力。 (282.3 mAh g(-1))。 380次循环后,放电容量分别保持在239.0和332.8 mAh g(-1),容量保持率分别为76.5%和92.6%,也远高于原始的铜-石墨电极(187.6 mAh g(-) 1)和270个循环后的66.4%)。在对铜箔表面进行超声波喷丸处理后,Cu-石墨/ Li半电池和LiNi0.8Co0.1Mn0.1 / Cu-石墨全电池中的Cu-石墨电极的容量,循环性能和倍率性能均得到显着改善,这将为锂离子电池大容量,长寿命的电极集电体材料的开发提供新思路。

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