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High carbon efficiency in CO-to-alcohol electroreduction using a CO reservoir

Articolo
Data di Pubblicazione:
2023
Citazione:
High carbon efficiency in CO-to-alcohol electroreduction using a CO reservoir / S. Park, I. Grigioni, T. Alkayyali, B.-. Lee, J. Kim, E. Shirzadi, R. Dorakhan, G. Lee, J. Abed, F. Bossola, E.D. Jung, Y. Liang, M.G. Lee, A. Shayesteh Zeraati, D. Kim, D. Sinton, E. Sargent. - In: JOULE. - ISSN 2542-4351. - 7:10(2023), pp. 2335-2348. [10.1016/j.joule.2023.08.001]
Abstract:
The electrochemical CO2 reduction reaction (CO2RR) has progressed but suffers an energy penalty from CO2 loss due to carbonate formation and crossover. Cascade CO2 to CO conversion followed by CO reduction addresses this issue, but the combined figures of carbon efficiency (CE), energy efficiency (EE), selectivity, and stability require improvement. We posited that increased CO availability near active catalytic sites could maintain selectivity even under CO-depleted conditions. Here, we present a heterojunction carbon reservoir catalyst (CRC) architecture that combines copper nanoparticles with porous carbon nanoparticles. The pyridinic and pyrrolic functionalities of CRC can absorb CO enabling high CE under CO-depleted conditions. With CRC catalyst, we achieve ethanol FE and CE of 50% and 93% (CE∗Faradaic efficiency [FE] = 47%) in flow cell at 200 mA cm−2, fully doubling the best prior CE∗FE to ethanol. In membrane electrode assembly (MEA) system, we show sustained efficiency over 85 h at 100 mA cm−2.
Tipologia IRIS:
01 - Articolo su periodico
Keywords:
carbon monoxide; carbon utilization; CO electroreduction; CO2 electroreduction; CO2 valorization; electrocatalysis; ethanol; nitrogen-doped carbon; porosity control; renewable fuels
Elenco autori:
S. Park, I. Grigioni, T. Alkayyali, B.-. Lee, J. Kim, E. Shirzadi, R. Dorakhan, G. Lee, J. Abed, F. Bossola, E.D. Jung, Y. Liang, M.G. Lee, A. Shayesteh Zeraati, D. Kim, D. Sinton, E. Sargent
Autori di Ateneo:
GRIGIONI IVAN ( autore )
Link alla scheda completa:
https://air.unimi.it/handle/2434/1022518
Link al Full Text:
https://air.unimi.it/retrieve/handle/2434/1022518/2340646/CarbonReservoirCatalyst_MS_Revised.pdf
Progetto:
Photoelectrochemical Solar Light Conversion into Fuels on Colloidal Quantum Dots Based Photoanodes (QuantumSolarFuels)
  • Aree Di Ricerca

Aree Di Ricerca

Settori (4)


Settore CHIM/02 - Chimica Fisica

Settore ING-IND/27 - Chimica Industriale e Tecnologica

Settore CHEM-02/A - Chimica fisica

Settore ICHI-02/B - Chimica industriale tecnologica
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Realizzato con VIVO | Progettato da Cineca | 25.11.5.0