Abstract
Three quinone-based derivatives (HBU680, HBU888, and HBU889) are synthesized and separately mixed with activated carbon (AC) and electropolymerized to form a homogeneous composite electrode. The electrochemical properties of the composite electrodes are studied. The electrochemical properties are mainly characterized by PhQ-PhQH2 and Q-QH2 redox transitions. The composite electrodes show specific capacitance of 176 F/g, 262 F/g, and 145 F/g for HBU680, HBU888, and HBU889, respectively. The HBU888 shows the highest specific capacitance due to the fast PhQ-PhQH2 redox transition at a scan rate of 100 mV/s. The composite electrodes also show a 100% capacity retention over 10,000 cycles. These results show that the new quinone-based derivates can enhance pseudocapacitive behavior and warrant their use as electrode additives for supercapacitors. Graphical abstract: The new quinone-based electrode additives were synthesized and used as additives for supercapacitor electrodes. The electrochemical properties are mainly characterized by PhQ-PhQH2 and Q-QH2 redox transitions. The composite electrodes show specific capacitance of 176 F/g, 262 F/g, and 145 F/g for HBU680, HBU888, and HBU889 respectively. The HBU888 shows the highest specific capacitance due to the fast PhQ-PhQH2 redox. The composite electrodes also show a 100% capacity retention over 5000 cycles. [Figure not available: see fulltext.]
| Original language | English |
|---|---|
| Pages (from-to) | 171-179 |
| Number of pages | 9 |
| Journal | Macromolecular Research |
| Volume | 31 |
| Issue number | 2 |
| DOIs | |
| Publication status | Published - Feb 2023 |
Bibliographical note
Publisher Copyright:© 2023, The Author(s), under exclusive licence to The Polymer Society of Korea.
Keywords
- Activated carbon
- Pseudocapacitance
- Quinone based
- Redox reaction
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