Materials ScienceEngineering

E. Wikner, E. Björklund, Johan Fridner, D. Brandell, T. Thiringer

2021.4.1Journal of Power Sources Advances

DOI: 10.1016/j.powera.2021.100054

Abstract

In many lithium-ion battery (LIB) applications, e.g. hybrid vehicles and load-levelling storage systems, only part of the state-of-charge (SOC) range needs to be utilised. This offers the possibility to use an optimal SOC window to avoid LIB ageing. Here, a large test matrix is designed to study LIB ageing in a commercial 26 Ah pouch cell, in order to map the ageing behaviour at different SOC levels with respect to temperature and current. A quanti fi - cation of the degradation modes, loss of lithium inventory (LLI), loss of active positive (LAM PE ) and negative (LAM NE ) electrode materials is made by analysing the change in the open circuit voltage (OCV). A key result is that lower SOC intervals signi fi cantly improved battery ageing. Even during harsh test conditions, such as high C-rates and temperatures, the cells deliver more than three times the expected number of full cycle equivalents. High SOC combined with high C-rate increase ageing where the dominating ageing mechanisms are LLI, followed by LAM PE .

Citation format

WIKNER, E., et al. How the utilised SOC window in commercial li-ion pouch cells influence battery ageing. Journal of Power Sources Advances, 2021, 8: 100054.