Self-Discharge Processes in Symmetrical Supercapacitors with Activated Carbon Electrodes
Процессы саморазряда симметричных суперконденсаторов с электродами из активированного углерода
2023-09-26
SCID: 54.1/njcgr76q
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activated carbon electrodesaqueous MgSO4 electrolytecharge redistributionself-dischargesymmetrical supercapacitors
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Abstract (AI)
The self-discharge of an electric double-layer capacitor with composite activated carbon electrodes and aqueous electrolyte (1 M MgSO4) was studied in detail. Under a long-term potentiostatic charge (stabilization), a decrease in the discharge capacity was observed in the region of voltages exceeding 0.8 V. The self-discharge process consists of two phases. In the initial phase, the cell voltage drop is due to the charge redistribution inside electrodes. During the main phase, the charge transfer between the electrodes determines the voltage drop. The optimal stabilization time of the self-discharge was found to be 50 min at 1.4 V. Hydrophilization of the negative electrode occurred during long-term polarization due to the formation of epoxy functional groups.
Key Findings
1
Long-term polarization hydrophilizes the negative electrode through formation of epoxy functional groups.
2
Long-term potentiostatic stabilization above 0.8 V decreases the discharge capacity of symmetrical activated-carbon supercapacitors using 1 M MgSO4 aqueous electrolyte.
3
Self-discharge proceeds in two phases: initial voltage loss from charge redistribution within electrodes, followed by charge transfer between electrodes.
4
The optimal stabilization time for self-discharge was 50 minutes at a cell voltage of 1.4 V.
Research Object
symmetrical electric double-layer supercapacitors with composite activated carbon electrodes and 1 M MgSO4 aqueous electrolyte
Research Subject
self-discharge mechanisms, voltage-drop phases, stabilization-time optimization, and polarization-induced hydrophilization of the negative electrode
Publication Details
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2023-09-26
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