Predicting the efficiency of oxygen-evolving electrolysis on the Moon and Mars.

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Title: Predicting the efficiency of oxygen-evolving electrolysis on the Moon and Mars.
Authors: Lomax BA; WestCHEM, School of Chemistry, University of Glasgow, Glasgow, G12 8QQ, UK. beth.lomax@esa.int.; ESA - European Space Research and Technology Centre, Keplerlaan, Noordwijk, 2201 AZ, Netherlands. beth.lomax@esa.int., Just GH; Department of Mechanical, Aerospace and Civil Engineering, University of Manchester, Oxford Road, Manchester, M13 9PL, United Kingdom., McHugh PJ; WestCHEM, School of Chemistry, University of Glasgow, Glasgow, G12 8QQ, UK., Broadley PK; Department of Mechanical, Aerospace and Civil Engineering, University of Manchester, Oxford Road, Manchester, M13 9PL, United Kingdom., Hutchings GC; Department of Mechanical, Aerospace and Civil Engineering, University of Manchester, Oxford Road, Manchester, M13 9PL, United Kingdom., Burke PA; Space Exploration Sector, Johns Hopkins University Applied Physics Laboratory, Laurel, MD, USA., Roy MJ; Department of Mechanical, Aerospace and Civil Engineering, University of Manchester, Oxford Road, Manchester, M13 9PL, United Kingdom., Smith KL; Department of Mechanical, Aerospace and Civil Engineering, University of Manchester, Oxford Road, Manchester, M13 9PL, United Kingdom., Symes MD; WestCHEM, School of Chemistry, University of Glasgow, Glasgow, G12 8QQ, UK. mark.symes@glasgow.ac.uk.
Source: Nature communications [Nat Commun] 2022 Feb 08; Vol. 13 (1), pp. 583. Date of Electronic Publication: 2022 Feb 08.
Publication Type: Journal Article; Research Support, Non-U.S. Gov't
Journal Info: Publisher: Nature Pub. Group Country of Publication: England NLM ID: 101528555 Publication Model: Electronic Cited Medium: Internet ISSN: 2041-1723 (Electronic) Linking ISSN: 20411723 NLM ISO Abbreviation: Nat Commun Subsets: MEDLINE; PubMed not MEDLINE
Database: MEDLINE Ultimate
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ISSN:2041-1723
DOI:10.1038/s41467-022-28147-5