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These properties are highly desirable for high power and long cycle life electrochemical capacitors.
These results show that the PB is a promising candidate for aqueous sodium-ion capacitors.
Experimental and simulated results show good agreement, validating the model of ceramic capacitors.
The obtained results may provide a helpful guidance for improving the reliability and performance of ferroelectric capacitors.
This represents a significant improvement compared to commercially available multilayer capacitors.
The excellent electrochemical performance and durability observed for this composite electrode suggest its potential application for electrochemical capacitors.
The results show that the electrolytes have significant influence on the capacitors’ performances.
This work provides an effective way to reduce the leakage current and improve the endurance property of HZO-based capacitors.
To some degrees, these results have guiding significance for the low-temperature applications of manganese oxides-based electrochemical capacitors.