Ammonia has a strong selectivity for the valuable metals, such as Ni and Co, to form the metal complexes (Co(NH
3)
n2+/Ni(NH
3)
n2+) in the leaching solution according to the Eh-pH diagram for Co-NH
3-H
2O and Ni-NH
3-H
2O system, so that the undesirable impurities, such as Al, Fe and Mn, are hardly leached as precipitates to separate [
34]. At present, most ammonia leaching research focused on NCM/LiNi
xCo
yAl
1-x-yO
2 (NCA), but few on LiCoO
2 material. Ammonia leaching of LiCoO
2 material is more difficult than NCM/NCA, mainly because LiCoO
2 is a primary particle and NCM/NCA is a secondary particle composed of primary grains. When NCM is leached by an ammonia leaching agent, the secondary particles will break, resulting in an increase in the specific surface of the reaction, which is more conducive to the ammonia leaching. As the complexity of the cathode electrode composition of LIBs (LiCoO
2/NCM/NCA/LiMn
2O
4 mixture) increases, it is necessary to overcome the issue of ammonia leaching of LiCoO
2 if this method is used to recover waste LIBs in the future. Therefore, it will improve the applicability of the ammonia leaching method and promote the development of the new energy industry chain if this method can be applied to LiCoO
2 material. In addition, the ammonia leaching method used to recover spent LiCoO
2 batteries has inherent advantages. Compared with NCM/NCA, ammonia leaching LiCoO
2 material will not generate Mn/Al-containing solid slag, which is beneficial to the leaching process and does not require the slag treatment step. In this study, the leaching mechanism of LiCoO
2 in ammonia-sodium sulfite-ammonium chloride was first elucidated. The leaching behavior of LiCoO
2 material was revealed by studying the role of each component and the change of valence state of Co during the ammonia leaching process. According to the characteristics of small specific surface area and stable structure of LiCoO
2, mechanical activation (high-energy ball milling) pretreatment was used to ameliorate its specific surface area and structure drawbacks, so as to improve the reaction rate. Finally, the apparent leaching kinetics models of Li and Co were established through the shrinking core reaction model and the apparent activation energies were also calculated. This research is of great significance for the efficient recovery of valuable elements from waste LiCoO
2 batteries.