Thermal Stability and Outgassing Behaviors of High-nickel Cathodes in Lithium-ion Batteries

Angew Chem Int Ed Engl. 2023 Oct 23;62(43):e202307243. doi: 10.1002/anie.202307243. Epub 2023 Jun 30.

Abstract

LiNiO2 -based high-nickel layered oxide cathodes are regarded as promising cathode materials for high-energy-density automotive lithium batteries. Most of the attention thus far has been paid towards addressing their surface and structural instability issues brought by the increase of Ni content (>90 %) with an aim to enhance the cycle stability. However, the poor safety performance remains an intractable problem for their commercialization in the market, yet it has not received appropriate attention. In this review, we focus on the gas generation and thermal degradation behaviors of high-Ni cathodes, which are critical factors in determining their overall safety performance. A comprehensive overview of the mechanisms of outgassing and thermal runaway reactions is presented and analyzed from a chemistry perspective. Finally, we discuss the challenges and the insights into developing robust, safe high-Ni cathodes.

Keywords: Electrolyte decomposition; High-nickel oxide cathodes; Lithium-ion batteries; Outgassing; Thermal stability.

Publication types

  • Review