1632
(Invited) Pressure-Tailored Lithium Deposition and Dissolution in Lithium Metal Batteries

Monday, 30 May 2022: 15:00
West Meeting Room 215 (Vancouver Convention Center)
C. Fang (Michigan State University), B. Lu (University of California San Diego), G. M. Pawar (Idaho National Laboratory), M. Zhang (University of California San Diego, La Jolla, CA 92093, USA), D. Cheng (University of California, San Diego), S. Chen (General Motors R&D), M. Ceja, J. M. Doux (University of California San Diego), M. Cai (General Motors Library), B. Liaw (Idaho National Laboratory), and S. Meng (University of California San Diego)
Unregulated lithium (Li) growth is the major cause of low Coulombic efficiency, short cycle life and safety hazards for rechargeable Li metal batteries. Strategies that aim to achieve large granular Li deposits have been extensively explored, and yet it remains a challenge to achieve the ideal Li deposits, which consist of large Li particles that are seamlessly packed on the electrode and can be reversibly deposited and stripped. Here we report a dense Li deposition (99.49% electrode density) with an ideal columnar structure that is achieved by controlling the uniaxial stack pressure during battery operation. Using multiscale characterization and simulation, we elucidate the critical role of stack pressure on Li nucleation, growth and dissolution processes and propose a Li-reservoir-testing protocol to maintain the ideal Li morphology during extended cycling. The precise manipulation of Li deposition and dissolution is a critical step to enable fast charging and a low-temperature operation for Li metal batteries.