Computational Screening of Doped Graphene Electrodes for Alkaline CO2 Reduction
Verma, A. M., Honkala, K., & Melander, M. M. (2021). Computational Screening of Doped Graphene Electrodes for Alkaline CO2 Reduction. Frontiers in Energy Research, 8, Article 606742. https://doi.org/10.3389/fenrg.2020.606742
Published in
Frontiers in Energy ResearchDate
2021Copyright
© 2021 Verma, Honkala and Melander.
The electrocatalytic CO2 reduction reaction (CO2RR) is considered as one of the most promising approaches to synthesizing carbonaceous fuels and chemicals without utilizing fossil resources. However, current technologies are still in the early phase focusing primarily on identifying optimal electrode materials and reaction conditions. Doped graphene-based materials are among the best CO2RR electrocatalysts and in the present work we have performed a computational screening study to identify suitable graphene catalysts for CO2RR to CO under alkaline conditions. Several types of modified-graphene frameworks doped with metallic and non-metallic elements were considered. After establishing thermodynamically stable electrodes, the electrochemical CO2RR to CO is studied in the alkaline media. Both concerted proton-coupled electron transfer (PCET) and decoupled proton and electron transfer (ETPT) mechanisms were considered by developing and using a generalization of the computational hydrogen electrode approach. It is established that the CO2 electrosorption and associated charge transfer along the ETPT pathway are of utmost importance and significantly impact the electrochemical thermodynamics of CO2RR. Our study suggests an exceptional performance of metal-doped nitrogen-coordinated graphene electrodes, especially 3N-coordinated graphene electrodes.
...
Publisher
Frontiers Media SAISSN Search the Publication Forum
2296-598XKeywords
Publication in research information system
https://converis.jyu.fi/converis/portal/detail/Publication/51776012
Metadata
Show full item recordCollections
Related funder(s)
Research Council of FinlandFunding program(s)
Academy Project, AoF; Postdoctoral Researcher, AoFAdditional information about funding
MM was supported by the Academy of Finland grants 307853 and 317739. AV and KH were supported by the Academy of Finland grant 317739.License
Related items
Showing items with similar title or keywords.
-
Electronic structure methods for simulating the applied potential in semiconductor electrochemistry
Moradi, Kayvan; Melander, Marko M. (Elsevier, 2025)Semiconductor electrodes (SCEs) play a decisive role in e.g. clean energy conversion technologies but understanding their complex electrochemistry remains an outstanding challenge. Herein, we review electronic structure ... -
Proton reduction by phosphinidene-capped triiron clusters
Rahaman, Ahibur; Lisensky, George C.; Haukka, Matti; Tocher, Derek A.; Richmond, Michael G.; Colbran, Stephen B.; Nordlander, Ebbe (Elsevier BV, 2021)Bis(phosphinidene)-capped triiron carbonyl clusters, including electron rich derivatives formed by substitution with chelating diphosphines, have been prepared and examined as proton reduction catalysts. Treatment of the ... -
Cations Determine the Mechanism and Selectivity of Alkaline Oxygen Reduction Reaction on Pt(111)
Kumeda, Tomoaki; Laverdure, Laura; Honkala, Karoliina; Melander, Marko M.; Sakaushi, Ken (Wiley-VCH Verlag, 2023)The proton-coupled electron transfer (PCET) mechanism of the oxygen reduction reaction (ORR) is a long-standing enigma in electrocatalysis. Despite decades of research, the factors determining the microscopic mechanism of ... -
Grand canonical ensemble approach to electrochemical thermodynamics, kinetics, and model Hamiltonians
Melander, Marko M. (Elsevier, 2021)The unique feature of electrochemistry is the ability to control reaction thermodynamics and kinetics by the application of electrode potential. Recently, theoretical methods and computational approaches within the grand ... -
Reduction-oxidation dynamics of oxidized graphene : Functional group composition dependent path to reduction
Hong, Yi-Zhe; Tsai, Hung-Chieh; Wang, Yu-Han; Aumanen, Jukka; Myllyperkiö, Pasi; Johansson, Andreas; Kuo, Yen-Chien; Chang, Lo-Yueh; Chen, Chia-Hao; Pettersson, Mika; Woon, Wei-Yen (Pergamon, 2018)Micrometer-sized oxidation patterns containing varying composition of functional groups including epoxy, ether, hydroxyl, carbonyl, carboxyl, were created in chemical vapor deposition grown graphene through scanning probe ...