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Hydrophobic assembly of molecular catalysts at the gas–liquid–solid interface drives highly selective CO2 electromethanation

Morgan McKee Orcid Logo, Maximilian Kutter, Yue Wu, Hannah Williams, Marc-Antoine Vaudreuil, Mariolino Carta, Ashok Kumar Yadav Orcid Logo, Harishchandra Singh Orcid Logo, Jean-François Masson Orcid Logo, Dieter Lentz, Moritz Kuehnel, Nikolay Kornienko Orcid Logo

Nature Chemistry, Volume: 17, Issue: 1, Pages: 92 - 100

Swansea University Authors: Maximilian Kutter, Yue Wu, Mariolino Carta, Moritz Kuehnel

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Published in: Nature Chemistry
ISSN: 1755-4330 1755-4349
Published: Springer Science and Business Media LLC 2025
Online Access: Check full text

URI: https://cronfa.swan.ac.uk/Record/cronfa69362
first_indexed 2025-04-28T08:12:44Z
last_indexed 2025-05-13T09:11:19Z
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spelling 2025-05-12T16:24:02.4763845 v2 69362 2025-04-28 Hydrophobic assembly of molecular catalysts at the gas–liquid–solid interface drives highly selective CO2 electromethanation 36a867616f22544765279b82ac64e8e3 Maximilian Kutter Maximilian Kutter true false 5c0963b4ec6334e3d4d3ca12ce7343bc Yue Wu Yue Wu true false 56aebf2bba457f395149bbecbfa6d3eb Mariolino Carta Mariolino Carta true false 210dbad181ce095d6f8bf2bd1d616d4e Moritz Kuehnel Moritz Kuehnel true false 2025-04-28 Journal Article Nature Chemistry 17 1 92 100 Springer Science and Business Media LLC 1755-4330 1755-4349 1 1 2025 2025-01-01 10.1038/s41557-024-01650-6 COLLEGE NANME COLLEGE CODE Swansea University Not Required N.K. and M.M. acknowledge support from NSERC Discovery Grant RGPIN-2019-05927. This work was also supported by the EPSRC (EP/S017925/1 to M.F.K.), the Welsh Government (Quebec-Wales Joint Call For Projects to M.F.K.), HEFCW (RWIF Collaboration Booster to M.F.K.), Erasmus+ (to M.K.) and Swansea University (start-up funds to M.F.K.). We thank J. D. McGettrick for assistance with XPS data collection and processing. K. Klementiev is acknowledged for assistance with XAFS data collection. H.S. acknowledges MAX IV Laboratory for beamtime on Balder Beamline under proposal 20240083. Research conducted at MAX IV, a Swedish national user facility, is supported by the Swedish Research Council under contract no. 2018-07152, the Swedish Governmental Agency for Innovation Systems under contract no. 2018-04969, and Formas under contract no. 2019-02496. H.S. also acknowledges the EU/Interreg Aurora/Sustainable Hydrogen project for financial support, as well as support from the ANRF, Department of Science and Technology, India, through the Ramanujan Faculty Award (RJF/2023/000058), the Strategic Research Council within the Research Council of Finland decision 358422 and JustH2Transit, and thanks M. Huttula. 2025-05-12T16:24:02.4763845 2025-04-28T09:06:56.5016352 Faculty of Science and Engineering School of Engineering and Applied Sciences - Chemistry Morgan McKee 0000-0002-8636-5638 1 Maximilian Kutter 2 Yue Wu 3 Hannah Williams 4 Marc-Antoine Vaudreuil 5 Mariolino Carta 6 Ashok Kumar Yadav 0000-0003-2716-0971 7 Harishchandra Singh 0000-0001-7754-5648 8 Jean-François Masson 0000-0002-0101-0468 9 Dieter Lentz 10 Moritz Kuehnel 11 Nikolay Kornienko 0000-0001-7193-2428 12
title Hydrophobic assembly of molecular catalysts at the gas–liquid–solid interface drives highly selective CO2 electromethanation
spellingShingle Hydrophobic assembly of molecular catalysts at the gas–liquid–solid interface drives highly selective CO2 electromethanation
Maximilian Kutter
Yue Wu
Mariolino Carta
Moritz Kuehnel
title_short Hydrophobic assembly of molecular catalysts at the gas–liquid–solid interface drives highly selective CO2 electromethanation
title_full Hydrophobic assembly of molecular catalysts at the gas–liquid–solid interface drives highly selective CO2 electromethanation
title_fullStr Hydrophobic assembly of molecular catalysts at the gas–liquid–solid interface drives highly selective CO2 electromethanation
title_full_unstemmed Hydrophobic assembly of molecular catalysts at the gas–liquid–solid interface drives highly selective CO2 electromethanation
title_sort Hydrophobic assembly of molecular catalysts at the gas–liquid–solid interface drives highly selective CO2 electromethanation
author_id_str_mv 36a867616f22544765279b82ac64e8e3
5c0963b4ec6334e3d4d3ca12ce7343bc
56aebf2bba457f395149bbecbfa6d3eb
210dbad181ce095d6f8bf2bd1d616d4e
author_id_fullname_str_mv 36a867616f22544765279b82ac64e8e3_***_Maximilian Kutter
5c0963b4ec6334e3d4d3ca12ce7343bc_***_Yue Wu
56aebf2bba457f395149bbecbfa6d3eb_***_Mariolino Carta
210dbad181ce095d6f8bf2bd1d616d4e_***_Moritz Kuehnel
author Maximilian Kutter
Yue Wu
Mariolino Carta
Moritz Kuehnel
author2 Morgan McKee
Maximilian Kutter
Yue Wu
Hannah Williams
Marc-Antoine Vaudreuil
Mariolino Carta
Ashok Kumar Yadav
Harishchandra Singh
Jean-François Masson
Dieter Lentz
Moritz Kuehnel
Nikolay Kornienko
format Journal article
container_title Nature Chemistry
container_volume 17
container_issue 1
container_start_page 92
publishDate 2025
institution Swansea University
issn 1755-4330
1755-4349
doi_str_mv 10.1038/s41557-024-01650-6
publisher Springer Science and Business Media LLC
college_str Faculty of Science and Engineering
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hierarchy_top_id facultyofscienceandengineering
hierarchy_top_title Faculty of Science and Engineering
hierarchy_parent_id facultyofscienceandengineering
hierarchy_parent_title Faculty of Science and Engineering
department_str School of Engineering and Applied Sciences - Chemistry{{{_:::_}}}Faculty of Science and Engineering{{{_:::_}}}School of Engineering and Applied Sciences - Chemistry
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published_date 2025-01-01T05:29:11Z
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