Abstract
Biomass-derived carbons are very attractive materials due to the possibility of tuning
their properties for different energy-related applications. Various pore sizes, conductivities and
the inherent presence of heteroatoms make them attractive for different electrochemical reactions,
including the implementation of electrochemical capacitors or fuel cell electrodes. This contribution
demonstrates how different biomass-derived carbons prepared from the same precursor of viscose
fibers can reach appreciable capacitances (up to 200 F g��1) or a high selectivity for the oxygen
reduction reaction (ORR).We find that a highly specific surface area and a large mesopore volume
dominate the capacitive response in both aqueous and non-aqueous electrolytic solutions. While the
oxygen reduction reaction activity is not dominated by the same factors at low ORR overpotentials,
these take the dominant role over surface chemistry at high ORR overpotentials. Due to the high
selectivity of the O2 reduction to peroxide and the appreciable specific capacitances, it is suggested
that activated carbon fibers derived from viscose fibers are an attractive and versatile material for
electrochemical energy conversion applications.
| Originalsprache | Englisch |
|---|---|
| Seitenumfang | 14 |
| Fachzeitschrift | C - Journal of Carbon Research |
| Volume | 7 |
| Ausgabenummer | 55 |
| DOIs | |
| Publikationsstatus | Veröffentlicht - 2021 |
Wissenschaftszweige
- 204 Chemische Verfahrenstechnik
- 205016 Werkstoffprüfung
- 210006 Nanotechnologie
- 104014 Oberflächenchemie
- 105113 Kristallographie
- 105116 Mineralogie
- 204001 Anorganisch-chemische Technologie
- 211104 Metallurgie
- 104005 Elektrochemie
- 104006 Festkörperchemie
- 104017 Physikalische Chemie
- 503013 Fachdidaktik Naturwissenschaften
JKU-Schwerpunkte
- Sustainable Development: Responsible Technologies and Management
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