Li Youpeng, Duan Haofan, He Shuqin, Li Junxian, Hu Yang, Li YuTing, Wu Shijie, Wu Heng, Xu Guobao, Wang Gang
School of Energy and Automotive Engineering, Shunde Polytechnic, Foshan, 528300, China.
Hunan Provincial Key laboratory of Thin Film Materials and Devices, School of Material Sciences and Engineering, Xiangtan University, Xiangtan, 411105, China.
Small. 2024 Dec;20(49):e2404835. doi: 10.1002/smll.202404835. Epub 2024 Sep 9.
Lithium (Li) metal is regarded as the most promising anode for next-generation batteries with high energy density. However, the uncontrolled dendrite growth and infinite volume expansion during cycling seriously hinder the application of Li metal batteries (LMBs). Herein, an inorganic/organic protective layer (labeled as BPH), composed of in situ formed inorganic constituents and PVDF-HFP, is designed on the 3D carbon paper (CP) surface by hot-dipping method. The BPH layer can effectively improve the mechanical strength and ionic conductivity of the SEI layer, which is beneficial to expedite the Li-ion transfer of the entire framework and achieve stable Li plating/stripping behavior. As a result, the modified 3D CP (BPH-CP) exhibits an ultrahigh average Coulombic efficiency (CE) of ≈99.7% over 400 cycles. Further, the Li||LiFePO (LFP) cell exhibits an extremely long-term cycle life of over 3000 cycles at 5 C. Importantly, the full cell with high mass loading LiFePO (20 mg cm) or LiNiCoMnO (NCM, 16 mg cm) cathode exhibits stable cycling for 100 or 150 cycles at 0.5 C with high-capacity retention of 86.5% or 82.0% even at extremely low N/P ratio of 0.88 or 0.94. believe that this work enlightens a simple and effective strategy for the application of high-energy-density and high-rate-C LMBs.
锂(Li)金属被认为是下一代高能量密度电池最有前景的负极材料。然而,循环过程中不受控制的枝晶生长和无限的体积膨胀严重阻碍了锂金属电池(LMBs)的应用。在此,通过热浸法在三维碳纸(CP)表面设计了一种由原位形成的无机成分和聚偏氟乙烯-六氟丙烯(PVDF-HFP)组成的无机/有机保护层(标记为BPH)。BPH层可以有效提高固体电解质界面(SEI)层的机械强度和离子电导率,这有利于加快整个框架的锂离子传输并实现稳定的锂电镀/剥离行为。结果,改性的三维CP(BPH-CP)在400次循环中表现出约99.7%的超高平均库仑效率(CE)。此外,Li||LiFePO₄(LFP)电池在5C下表现出超过3000次循环的极长循环寿命。重要的是,具有高质量负载LiFePO₄(20 mg cm⁻²)或LiNiCoMnO₄(NCM,16 mg cm⁻²)正极的全电池在0.5C下稳定循环100或150次,即使在极低的N/P比为0.88或0.94时,仍具有86.5%或82.0%的高容量保持率。相信这项工作为高能量密度和高倍率的LMBs应用开辟了一种简单有效的策略。