Yang Min, Fu Licai, Zhu Jiajun, Yang Wulin, Zhou Lingping
College of Material Science and Engineering, Hunan University, Changsha410082, China.
ACS Appl Mater Interfaces. 2022 Nov 23;14(46):52467-52475. doi: 10.1021/acsami.2c14067. Epub 2022 Nov 8.
Large current discharge is restricted because of the poor conductivity between the Ta-doped LiLaZrO (LLZTO) solid electrolyte and electrode. The poor conductivity would be caused by the interfacial reaction between LLZTO and the cathode, which is detrimental to the secondary Li ionic or metal battery. In this case, we studied the interfacial reaction between LLZTO and a haloid cathode (NiCl) for a thermal battery for the first time, and a lower interfacial resistance could be obtained by a simple heat treatment. Owing to the element interdiffusion of Cl and O at a high temperature of 600 °C, the main reaction products are LaOCl, LiCl, and LaZrO. This reaction reduces the interfacial resistance from 3 Ω to 2 Ω. After a pretreatment at 600 °C, the discharge specific energy could reach 1254 Wh kg from 828 Wh kg at 550 °C with a cut-off voltage of 1.8 V. These results suggest that the interfacial reaction could be significant for the battery by adding interfacial contact. It is an effective approach to decrease the interfacial resistance at high temperature for some specific system, such as a haloid cathode-solid electrolyte.