Investigating the effectiveness of borophene on anchoring and influence on kinetics of sodium superoxide in sodium-oxygen batteries

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dc.contributor.author Fwalo, Chewe
dc.contributor.author Kochaev, A.
dc.contributor.author Mapasha, Refilwe Edwin
dc.date.accessioned 2025-04-09T10:37:43Z
dc.date.available 2025-04-09T10:37:43Z
dc.date.issued 2024-04
dc.description DATA AVAILABILITY : Data will be made available on request. en_US
dc.description.abstract Owing to the increasing cost and limited resources of lithium metal, there is a growing interest in developing energy storage systems that are more affordable, environmentally friendly, and have high energy densities. This is also driven by the need to significantly reduce carbon dioxide emissions resulting from the use of fossil fuels. The sodium–oxygen battery has emerged as a potential alternative, as the materials used for both of its electrodes are among the most abundant and inexpensive elements on Earth. However, despite these advantages, there are technical challenges in implementing it, such as the insulation of the cathode electrode and failure to prevent discharge products from desorbing into electrolytes during discharging. In this study, using density functional theory based on first principles, we investigated the electronic properties of freestanding 12 and 3-borophenes after adsorption of sodium superoxide (NaO2). Our findings showed that the adsorption energy of sodium superoxide on 12 and 3 borophene are −3.85 eV and −3.24 eV, respectively. The large negative values of adsorption energy suggest that sodium superoxide is anchored spontaneously, which is significant as it can be prevented from migrating to the negative electrode via the electrolyte during the discharging process. Furthermore, the 12 and 3 structures showed moderate diffusion energy barriers of 0.89 eV and 1.37 eV and decomposition energies of 0.73 eV and 0.52 eV, respectively. The latter demonstrates the catalytic effects of nanosheets on the decomposition of the sodium superoxide into separated sodium (Na+) and oxygen (O2). Moreover, the decomposition energies being lower than sodium superoxide formation energy (3.90 eV) in a vacuum, suggests nanosheets effects during the charging process. Most importantly, the metallic characteristics of both crystal structures were preserved after the adsorption of sodium superoxide, and the electronic conductivities were enhanced. This is significant to improve the cycle life of the battery, as the materials can charge back the decomposed species during the charging process, thereby preventing the formation of dendrites at the surface of the cathode. Ultimately, the predicted electronic properties for both structures demonstrate their potential as cathode electrode materials for enhancing the electrochemical processes of sodium–oxygen batteries. en_US
dc.description.department Physics en_US
dc.description.librarian am2024 en_US
dc.description.sdg SDG-07:Affordable and clean energy en_US
dc.description.sponsorship The University of Pretoria, Department of Research and Innovation and the National Institute for Theoretical and Computational Sciences (NTheCS). en_US
dc.description.uri http://www.elsevier.com/locate/est en_US
dc.identifier.citation Fwalo, C., Kochaev, A. & Mapasha, R.E. 2024, 'Investigating the effectiveness of borophene on anchoring and influence on kinetics of sodium superoxide in sodium–oxygen batteries', Journal of Energy Storage, vol. 84, art. 110977, pp. 1-11. https://DOI.org/10.1016/j.est.2024.110977. en_US
dc.identifier.issn 2352-152X (print)
dc.identifier.issn 2352-1538 (online)
dc.identifier.other 10.1016/j.est.2024.110977
dc.identifier.uri http://hdl.handle.net/2263/101976
dc.language.iso en en_US
dc.publisher Elsevier en_US
dc.rights © 2024 The Authors. This is an open access article under the CC BY-NC license. en_US
dc.subject Sodium–oxygen battery en_US
dc.subject 3-Borophene en_US
dc.subject 12 Borophene en_US
dc.subject Sodium superoxide en_US
dc.subject Density functional theory (DFT) en_US
dc.subject SDG-07: Affordable and clean energy en_US
dc.title Investigating the effectiveness of borophene on anchoring and influence on kinetics of sodium superoxide in sodium-oxygen batteries en_US
dc.type Article en_US


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