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These results show that the composite film is a promising candidate for high energy electrochemical capacitors.
These properties are highly desirable for high power and long cycle life electrochemical capacitors.
Such excellent performance suggests that NPCHSs are attractive electrode candidates for electrical double layer capacitors.
These results demonstrate that E. prolifera is a promising precursor to prepare high performance and low cost electrode materials for electrical double layer capacitors (EDLCs).
Capacitors constructed with these electrodes are predicted to be significantly smaller than aluminum electrolyte capacitors that they could functionally replace plus be manufactured using standard semiconductor process equipment, creating interesting commercial opportunities.
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.
Larger die and server products requiring high performance power delivery solutions can also benefit substantially from embedded capacitors.