Liu Zongzhe, Ma Shaobo, Mu Xue, Li Renlong, Yin Geping, Zuo Pengjian
MITT Key Laboratory of Critical Materials Technology for New Energy Conversion and Storage, School of Chemistry and Chemical Engineering, Harbin Institute of Technology, Harbin 150001, China.
ACS Appl Mater Interfaces. 2021 Mar 17;13(10):11985-11994. doi: 10.1021/acsami.0c22880. Epub 2021 Mar 8.
A silicon anode with ultra-high specific capacity has motivated tremendous exploration for high-energy-density lithium ion batteries while it still faces serious issues of irreversible lithium loss, unstable electrode electrolyte interface (SEI), and huge volume expansion. Prelithiation is a crucial technology to alleviate the harm of active lithium loss of silicon-based full-cell systems. Herein, we reported a cathode prelithiation method using LiS-PAN as a lithium "donor", which was synthesized via chemical reaction between sulfurized polyacrylonitrile and Li-biphenyl complex. The LiS-PAN with an initial charging capacity of 668 mAh g (2.5-4.0 V) is loaded on the LiFePO electrode, and the LiFePO/LiS-PAN composite electrode displays a high initial charge capacity of 206 mAh g, which is 22.3% higher than the pristine LiFePO. With a silicon/graphite/carbon (Si/G/C) composite anode, the Si/G/C||LiFePO/LiS-PAN full cell exhibits a reversible capacity of 123 and 107 mAh g in the 1st and 10th cycle, which is 15.5 and 24.5% higher than the Si/G/C||LiFePO battery, respectively. The SEI layer of the silicon anode in the Si/G/C||LiFePO/LiS-PAN cell contains abundant conductive LiF species, which can enhance the interfacial stability and reaction kinetics of the cells. The proposed cathode prelithiation process is compatible with the industrial roll-to-roll electrode preparation process, exhibiting a promising application prospect.
具有超高比容量的硅阳极推动了对高能量密度锂离子电池的大量探索,但其仍面临不可逆锂损失、不稳定的电极电解质界面(SEI)和巨大体积膨胀等严重问题。预锂化是减轻硅基全电池系统活性锂损失危害的关键技术。在此,我们报道了一种使用LiS-PAN作为锂“供体”的阴极预锂化方法,LiS-PAN是通过硫化聚丙烯腈与联苯锂配合物之间的化学反应合成的。初始充电容量为668 mAh g(2.5 - 4.0 V)的LiS-PAN负载在LiFePO电极上,LiFePO/LiS-PAN复合电极显示出206 mAh g的高初始充电容量,比原始LiFePO高22.3%。使用硅/石墨/碳(Si/G/C)复合阳极时,Si/G/C||LiFePO/LiS-PAN全电池在第1和第10个循环中的可逆容量分别为123和107 mAh g,分别比Si/G/C||LiFePO电池高15.5%和24.5%。Si/G/C||LiFePO/LiS-PAN电池中硅阳极的SEI层包含丰富的导电LiF物种,这可以增强电池的界面稳定性和反应动力学。所提出的阴极预锂化工艺与工业卷对卷电极制备工艺兼容,具有广阔的应用前景。