Niu Jing, Huang Xianli, Yang Hui, Li Datuan, Gao Xingxu, Yang Ling, Chen Qian, Sun Ao, Zheng Kejun, Wang Tao, He Jianping
College of Material Science and Technology, Nanjing University of Aeronautics and Astronautics, 211006, Nanjing, Jiangsu Province People's Republic of China.
ACS Appl Mater Interfaces. 2024 Oct 23;16(42):57603-57613. doi: 10.1021/acsami.4c08053. Epub 2024 Oct 12.
Composite copper foil is considered to be the future-proof anode current collector solution for lithium-ion batteries (LIBs) with high energy density, for its light weight and low cost. Polypropylene (PP) film is widely used as the support layer of composite copper foil current collectors (CCs) due to its excellent mechanical properties and chemical stability. However, the interface adhesion between the PP layer and the copper layer is weak, due to the significant difference in surface energy. In this study, we prepared a hydrophilic PP film by air plasma treatment. After magnetron sputtering and electroplating, the composite copper foil (PP@Cu-1) with strong adhesion was then successfully prepared. In the T-peel test, for PP@Cu-1, the pull required to separate PP from the copper layer is approximately 7 times that of PP@Cu-0. The PP@Cu-1 composite copper foil exhibits excellent electrochemical properties when applied to LIBs. As an anode CC material, it could be a favorable competitor to conventional commercial Bare Cu and holds broad prospects for application in high-energy-density LIBs.
复合铜箔因其重量轻、成本低,被认为是未来具有高能量密度的锂离子电池(LIBs)阳极集流体的理想解决方案。聚丙烯(PP)薄膜因其优异的机械性能和化学稳定性,被广泛用作复合铜箔集流体(CCs)的支撑层。然而,由于表面能存在显著差异,PP层与铜层之间的界面附着力较弱。在本研究中,我们通过空气等离子体处理制备了亲水性PP薄膜。经过磁控溅射和电镀后,成功制备了具有强附着力的复合铜箔(PP@Cu-1)。在T型剥离试验中,对于PP@Cu-1,将PP与铜层分离所需的拉力约为PP@Cu-0的7倍。当应用于LIBs时,PP@Cu-1复合铜箔表现出优异的电化学性能。作为阳极CC材料,它可能是传统商业裸铜的有力竞争对手,在高能量密度LIBs中具有广阔的应用前景。