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Jang, Ji-Wook
JW Energy Lab.
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Unassisted electrochemical H2O2 production coupled to glycerol oxidation

Author(s)
Oh, DongrakHwang, Seon WooKim, Dong YeonMatthews, Jesse E.Lee, JinyoungAcosta, Jaime E. AvilésLee, Sang-WonXu, YiCho, AraLee, Dong UnJaramillo, Thomas F.Seo, Dong-HwaJang, Ji-Wook
Issued Date
2025-08
DOI
10.1038/s44160-025-00774-y
URI
https://scholarworks.unist.ac.kr/handle/201301/88832
Citation
Nature Synthesis, v.4, no.8, pp.931 - 939
Abstract
Hydrogen peroxide (H2O2) is not only a key eco-friendly oxidizer but also a promising energy carrier with an energy density comparable to that of compressed hydrogen. The industrial production of H2O2 relies on the energy-intensive and environmentally detrimental anthraquinone process, necessitating the exploration of greener alternatives. Here we demonstrate sustainable and unassisted electrochemical H2O2 production (via the two-electron oxygen reduction reaction) coupled to the oxidative valorization of glycerol, a biomass energy by-product, operating without external electric or solar energy inputs. We applied bismuth-loaded Pt and oxidized carbon nanotube electrocatalysts, for glycerol oxidation reaction and two-electron oxygen reduction reaction, respectively, which possess onset potentials close to the theoretical values for the electrochemical reactions. With this system, we achieved a high H2O2 production rate of approximately 8.475 μmol cm−2 min−1 and high glycerate selectivity for in situ glycerol oxidation reaction (74%), while producing renewable electricity on-site. (Figure presented.) © The Author(s), under exclusive licence to Springer Nature Limited 2025.
Publisher
Nature Publishing Group
ISSN
2731-0582

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