Jirui Ma, Xiaopeng Lu, Yuxin Zhou, Zhengrong Ai, Yuquan Hao, Qiang Wang, Andrey S. Gnedenkov, Fuhui Wang
• A novel corrosion protection strategy for Mg-Li alloy is proposed. • pH-responsive functionalized sepiolite microcontainers are prepared. • Cerium ions and barbituric acid are encapsulated via ion exchange and low-pressure impregnation. • The composite coating shows excellent self-healing ability. To enhance the corrosion resistance of Mg-Li alloy, a composite coating system integrating plasma electrolytic oxidation (PEO) with sol-gel sealing treatment is developed. Two functionalized sepiolite microcontainers (sepiolite-Ce and sepiolite-BA) are constructed by loading cerium ions (Ce 3+ ) via ion exchange and encapsulating barbituric acid (BA) through low-pressure impregnation. The microcontainers are subsequently incorporated into the coating surface through controlled sol-gel deposition process. UV-Vis and ICP-OES analyses reveal that both functionalized sepiolite microcontainers exhibited pH-responsive release characteristics under alkaline conditions. Electrochemical impedance spectroscopy (EIS) tests demonstrate that the inhibitor-containing composite coating has excellent long-term corrosion resistance and self-healing performance. After 240 h of immersion in a 0.5 wt.% NaCl solution, the low-frequency impedance modulus of the composite coating is four orders of magnitude higher than that of the pristine coating.