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Graphene-Modified 3D Copper Foam Current Collector for Dendrite-Free Lithium Deposition

机译:石墨烯修饰的3D铜泡沫集电器用于无枝晶锂沉积

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Lithium (Li) metal has been regarded as the ideal anode for the rechargeable Li-metal batteries such as Li-S and Li-air batteries. A series of problems caused by Li dendrites, such as low Coulombic efficiency (CE) and short circuit, have limited the application of Li-metal batteries. In this study, a graphene-modified three-dimensional (3D) Copper (Cu) current collector is addressed to enable dendrite-free Li deposition. After Cu foam is immersed into graphene oxide (GO) suspension, a spontaneous reduction of GO induced by Cu generates reduced graphene oxide on 3D Cu (rGO@Cu) substrate. The rGO@Cu foam not only provides large surface area to accommodate Li deposition for lowering the local effective current density, but also forms a rGO protective layer to effectively control the growth of Li dendrites. As current collector, the rGO@Cu foam shows superior properties than commercial Cu foam and planar Cu foil in terms of cycling stability and CE. The rGO@Cu foam delivers a CE as high as 98.5% for over 350 cycles at the current density of 1 mA cm?2. Furthermore, the full cell using LiFePO4 as cathode and Li metal as anode with rGO@Cu foam as current collector (LiFePO4/rGO@Cu-Li) is assembled to prove the admirable capacities and indicates commercialization of Li-metal batteries.
机译:金属锂(​​Li)被认为是可充电锂金属电池(例如Li-S和Li-air电池)的理想阳极。锂树枝状晶体引起的一系列问题,例如低库仑效率(CE)和短路,限制了锂金属电池的应用。在这项研究中,解决了石墨烯改性的三维(3D)铜(Cu)集电器,以实现无枝晶的Li沉积。将Cu泡沫浸入氧化石墨烯(GO)悬浮液中后,由Cu引起的GO的自发还原在3D Cu(rGO @ Cu)衬底上生成还原的氧化石墨烯。 rGO @ Cu泡沫不仅提供大的表面积以容纳锂沉积以降低局部有效电流密度,而且还形成了rGO保护层来有效控制Li树枝状晶体的生长。作为集电器,rGO @ Cu泡沫在循环稳定性和CE方面显示出优于商用Cu泡沫和平面Cu箔的性能。 rGO @ Cu泡沫在1 mA cm?2的电流密度下经过350个循环可提供高达98.5%的CE。此外,以rFe @ Cu泡沫作为集电器(LiFePO4 / rGO @ Cu-Li)组装了以LiFePO4为阴极,Li金属为阳极的全电池(LiFePO4 / rGO @ Cu-Li),以证明其令人称赞的容量并表明锂金属电池已商业化。

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