A Pyridine Mediator Enables High‐Efficiency, Long‐Cycling Anode‐Less/Free Lithium–Sulfur Batteries With Li 2 S Cathodes
Sijia Huang, Pengfei Sang, Haojing Sun, Yongzhu Fu, Xiang LiABSTRACT
Lithium sulfide (Li 2 S) is a promising high‐capacity cathode material. Importantly, it can provide lithium source, enabling lithium batteries with an anode‐less/free configuration. However, Li 2 S suffers from poor conductivity, high polarization, low material utilization, as well as the shuttle effect, severely restricting the long cycling performance of batteries. Herein, lithium pyridine‐2‐thiolate (PySLi) is proposed as a multifunctional mediator for Li 2 S‐based anode‐less/free batteries. It is revealed that PySLi can modify the reaction pathway of Li 2 S, comprehensively enhancing its electrochemical redox kinetics and stability. Results show that the energy efficiency of the Li||Li 2 S cell with PySLi stabilizes at ∼80% in the full‐scale range from 0.1 C to 3 C rate, which is much higher than that without PySLi (49% at 0.1 C and 22% at 3 C). The stability of the lithium metal anode is also improved, maintaining a high coulombic efficiency of >98% for 200 cycles and stable lithium stripping/plating behavior for 1000 h. Moreover, an anode‐free battery based on Li 2 S cathode works normally for 150 cycles, and an anode‐less pouch cell retains steady performance for 200 cycles. This multifunctional mediator provides a new strategy for the application of Li 2 S and stable anode‐less/free batteries with high energy density.