Chemistry

Drying Time Critical for Honey-Based Supercapacitor Performance

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This study investigates how varying electrode drying times affect the capacitive performance of graphene nanosheets derived from honey when used in supercapacitor applications. The research examines the relationship between drying duration and key performance metrics such as specific capacitance, energy density, and charge-discharge characteristics. Results demonstrate that optimal drying times significantly enhance the electrochemical properties of honey-derived graphene electrodes compared to both under-dried and over-dried samples.


This research provides practical guidance for manufacturing bio-derived supercapacitors, potentially enabling more sustainable energy storage devices using renewable carbon sources. Optimizing the electrode preparation process could improve the commercial viability of eco-friendly alternatives to conventional graphene-based supercapacitors.


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Source: Impact of electrode drying time on capacitive performance of honey-derived graphene nanosheets for supercapacitors