School of Chemistry and Chemical Engineering , Harbin Institute of Technology , Harbin 150001 , P. R. China.
Department of Chemistry , Southern University of Science and Technology (SUSTech) , Shenzhen , Guangdong 518055 , P. R. China.
ACS Appl Mater Interfaces. 2019 Feb 27;11(8):8148-8154. doi: 10.1021/acsami.9b01521. Epub 2019 Feb 14.
Intractable hurdles of low Coulombic efficiency and dendritic Li formation during a repeated deposition/stripping process hinder the commercial use of Li metal anode for next-generation battery systems. Achieving uniform Li nucleation is one of the effective strategies to address these issues, and it is of practical importance to realize this on a commercial Cu current collector that is lithiophobic. Herein, we design a nanostructured Ag lithiophilic layer on a Cu foil via an electroless plating process for a Li metal current collector. The deposition of lithiophilic Ag particles that are homogeneously distributed on the Cu foil can reduce the nucleation overpotential, realizing uniform Li nucleation and subsequently flat Li plating. As a result, a stable cycle stability of up to 360 h (1 mA cm) and an average Columbic efficiency of 94.5% for 100 cycles (1 mA cm) are achieved. Furthermore, CuAg full cells with LiFePO as a cathode exhibit good cycle performances and low polarization voltage. This approach provides another facile way for a stable lithium metal anode.
在反复的沉积/剥离过程中,库仑效率低和枝晶锂形成等棘手问题阻碍了锂金属阳极在下一代电池系统中的商业应用。实现均匀的锂成核是解决这些问题的有效策略之一,而在商业上对亲锂的 Cu 集流器上实现这一点具有实际意义。在此,我们通过化学镀工艺在 Cu 箔上设计了具有亲锂性的纳米结构 Ag 层,作为 Li 金属集流器。沉积在 Cu 箔上均匀分布的亲锂性 Ag 颗粒可以降低成核过电位,实现均匀的锂成核,进而实现平整的 Li 电镀。因此,实现了高达 360 h(1 mA cm)的稳定循环稳定性,以及在 100 个循环(1 mA cm)中平均库仑效率为 94.5%的稳定循环稳定性。此外,以 LiFePO4 作为正极的 CuAg 全电池表现出良好的循环性能和低极化电压。这种方法为稳定的锂金属阳极提供了另一种简便的方法。