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<p>Supercapacitors, advanced energy storage devices, distinguish themselves through electrostatic energy storage. Crucial for renewable energy, they ensure a consistent power supply. Notably, oxygen vacancies engineering enhances metal oxides' electrochemical performance in supercapacitors. NiFe<sub>2</sub>O<sub>4−δ</sub>, synthesized with abundant oxygen vacancies, exhibits superior conductivity and a 3.7-fold capacitance increase. This breakthrough underscores oxygen vacancies' potential in optimizing metal oxide performance, positioning them as promising materials for high-performance supercapacitor electrodes. The study's findings offer significant insights into advancing energy storage solutions with a focus on sustainable and efficient technologies.</p>
Chen-liuAnhuiChinaJianqiangShanghaiShandongJiangsuXicheng-gaoLulin-xieLinjie-mengMethod-of-researchTechnology-development-project-of-shandong