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High Performance Lithium Battery Anodes from Non-Water Based Graphene

机译:来自非水基石墨烯的高性能锂电池阳极

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High performance lithium battery anode plates were made from processed arc discharge graphene. Arc discharge graphene has been produced from glow electrolytic thermal arc discharging of graphite rods, different from graphene or reduced graphene prepared through other means, because it maintains high crystallinity and planar characteristics of graphite marked by low ID/IG and XRD peak (2θ = 26°C). Arc discharge Graphene was sonicated in NMP for hours until fully exfoliated and able to film coat without impediments on the rougher side of the electrode copper film. Sonicated Graphene was dried in the vacuum oven. Anode plates were prepared by homogenizing the sonicated graphene in PVDF saturated NMP (0.53% NMP; 4% superP carbon black; and 2.25wt% PVDF) for 1 hr. The anode slurry was coated on the copper plates using automatic doctor blade film coater at a speed of 100mm/min. Anode plates were dried at 80°C for and cured for 120°C for 2 hrs in vacuum oven. Coin cells of NMC//HGR were made and tested in CT2001A. The capacity of the anode cycled at 1C was ~1083mAhg-1. This very high capacity of the graphene anode represents 188.3% increase over nominal graphite anodes, and one of the highest reported in published literature.
机译:高性能锂电池阳极板由加工的电弧放电石墨烯制成。电弧放电石墨烯由石墨棒的辉光电解热电弧放电产生,与通过其他方式制备的石墨烯或减少的石墨烯不同,因为它保持了由低Id / Ig和XRD峰值标记的石墨的高结晶度和平面特性(2θ= 26 °C)。电弧放电石墨烯在NMP中以NMP超出小时,直到完全剥离并能够在电极铜膜的变形侧的静脉侧的屏蔽涂层。将超声化的石墨烯在真空烘箱中干燥。通过在PVDF饱和NMP(0.53%NMP; 4%SuperP炭黑;和2.25wt%PVDF)中均化超声化的石墨烯均化制备阳极板1小时。使用自动刮刀薄膜涂布机以100mm / min的速度涂覆阳极浆料。将阳极板在80℃下干燥,并在真空烘箱中固化120℃。在CT2001A中进行并测试NMC //HGR的硬币细胞。阳极在1℃下循环的容量为约1083mAhg-1。石墨烯阳极的这种非常高的容量占标称石墨阳极的增加188.3%,并且在公开文献中最高的最高报道之一。

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