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◆ Nature communications2026-08-24

Additive strongly-coordinated solvation structure towards high-voltage 600 Wh/kg-class lithium metal pouch cell.

Zhaoxia Zhang, Qian Chen, Bixuan Li, QingWei Zhai, Xiaokang Gu, Chundi Wei, Moxuan Wang, Yuying Jiao, Zhou Zhou, Qiannan Zhang, Andrew Xiang, Chunqiao Jin, Peng Kang, Pengbo Zhai, Kai Liu, Yongji Gong

原始摘要(英文原文)· Original abstract
Anions involved solvation structures have been widely designed to construct inorganic enriched interfaces to enable wide voltage window, which, however, sacrifices the anions and effective Li+ conductivity. Here we propose an additive-coordinated solvation structure of Li+, with the preferred sacrifice of additive rather than anions, to realize stable cycling of 600 Wh kg⁻¹-scale Li metal batteries. Leveraging the molecular design of additives, even a trace amount addition allows for its coordination within the inner sheath of Li+ solvation structure. This not only attenuates the excessive consumption of anions and solvent molecules, but also facilitates the formation of robust protective interface. Benefiting from these advantages, a 550.7 Wh kg⁻¹ Li | |LiNi0.8Co0.1Mn0.1O2 pouch cell maintains 80.0% capacity retention over 180 cycles at 0.1 C charge and 0.5 C discharge rate. Furthermore, the paired Li | | lithium-rich manganese-based layered oxide pouch cell achieves a specific energy of 602.5 Wh kg⁻¹, sustaining 80% capacity retention for 60 cycles at 0.1 C charge/discharge rate, thus validating the suitability of additive coordinated solvation structure.
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Additive strongly-coordinated solvation structure towards high-voltage 600 Wh/kg-class lithium metal pouch cell. — 科研速览 Science Skim