Effect of molecular grafting on the pore size distribution and the double layer capacitance of activated carbon for electrochemical double layer capacitors
✍ Scribed by Grégory Pognon; Thierry Brousse; Daniel Bélanger
- Publisher
- Elsevier Science
- Year
- 2011
- Tongue
- English
- Weight
- 608 KB
- Volume
- 49
- Category
- Article
- ISSN
- 0008-6223
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✦ Synopsis
High specific surface carbon (Black Pearls 2000) has been modified by electroactive anthraquinone (AQ) groups by spontaneous reduction of the corresponding in situ generated diazonium derivative. A set of modified carbons with different AQ loadings have been synthesized to study the effect of the grafted groups on the pore texture and on the double layer capacitance of the modified carbons. Grafting of a small amount of AQ molecules caused a significant loss of the BET surface area and affected mainly the ultramicroporosity of the carbon powder. A correlation of the pore texture with the electrochemical data allows to conclude that pores smaller than 0.65 nm do not significantly contribute to the double layer capacitance in H 2 SO 4 electrolyte and therefore are not efficiently accessible to the ions of this electrolyte. Above an AQ loading of 7 wt.%, both microporosity and mesoporosity are strongly affected but the decrease of double layer capacitance seems to be directly related to the coverage of the carbon surface by AQ molecules.
📜 SIMILAR VOLUMES
Carbide-derived carbon (CDC) was synthesised from molybdenum carbide by extracting Mo atoms in a high-temperature chlorine atmosphere. A systematic study of the influence of pore size on the electrical double layer (EDL) performance was carried out with carbons synthesised in the temperature interva