博士生冯依曼论文"Hard–Soft Gradient-Engineered Oxychloride Coating on Ni-Rich Cathodes for All-Solid-State Lithium Batteries"被ACS Nano接收发表
发布时间:2026-08-17
点击次数:
All-solid-state lithium batteries (ASSLBs) employing Ni-rich layered oxide cathodes (NRLOs) and sulfide solid-state electrolytes (SSEs) hold great promise for high energy density and enhanced safety, yet they suffer from severe interfacial instability. This study precisely constructs a composite gradient coating on the surface of NRLOs by using atomic layer deposition. The oxygen-rich inner layer, which is induced by the reaction between TiCl4 and predeposited Li2O/LiOH, functions as an electrochemically inert barrier that enhances structural integrity and suppresses transition-metal dissolution, whereas the chlorine-rich outer layer acts as a compliant interfacial region with favorable compatibility toward sulfide SSE, which accommodates volume changes during cycling and mitigates mechanical stress at the cathode/sulfide SSE interface. Additionally, the wellstructured LiCl nanocrystals formed within the coating layer improve both the cycling stability and Li+ transport kinetics. The optimized NCM95 cathode demonstrates exceptional cycling stability (96.9% capacity retention after 200 cycles) and rate capability (103 mAh g−1 at 2 C) at room temperature. This work underscores the importance of designing multifunctional coatings and provides a scalable approach to stabilizing the cathode/electrolyte interface for high-energy ASSLBs.
上一条: 博士生苗书凯论文"Unraveling the synergistic mechanism of H2SO4/H2O2 system enabled by a dynamic dosing strategy for sustainable recycling of spent Li-ion batteries"被Hydrometallurgy接收发表
下一条: 博士生刘松霖论文"Selective recovery of lithium from waste aluminum electrolyte and regeneration of potassium-rich aluminum electrolyte"被Waste Management接收发表
