Data of tuning NiCo2O4 bifunctionality with nitrogen-doped graphene nanoribbons in oxygen electrocatalysis for zinc-air battery application
Bezerra, Leticia S.; Mooste, Marek; Fortunato, Guilherme V.; Cardoso, Eduardo S. F.; Lanza, Marcos R. V.; Tammeveski, Kaido; Maia, Gilberto
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README.txt | 2.805Kb | |
Figure6a.csv | 92.75Kb | |
Figure6b.csv | 796.7Kb | |
Figure7a.csv | 1.339Mb | |
Figure7b.csv | 1.016Mb | |
Figure7c.csv | 435.4Kb | |
Figure7d.csv | 1.020Mb | |
FigureS17a.csv | 621.8Kb | |
FigureS17b.csv | 686.1Kb | |
FigureS17c.csv | 133.3Kb | |
FigureS17d.csv | 93.30Kb |
Abstract
This dataset contains the data presented in the figures of pulbished paper "Tuning NiCo2O4 bifunctionality with nitrogen-doped graphene nanoribbons in oxygen electrocatalysis for zinc-air battery application" Journal of Electroanalytical Chemistry 928 117000 (https://doi.org/10.1016/j.jelechem.2022.117000)
The electrochemical characterisation data, which was measured in University of Tartu Institute of Chemistry, is for Figures 6, 7, S17 and the nomenclature of the catalysts is the same as in tthe mentioned article.... Show more Show less
Keyword
Transition metal oxide, Graphene nanoribbons, Nitrogen-doped carbon, Oxygen reduction reaction, Oxygen evolution reaction, Zinc-air batteryItem type
info:eu-repo/semantics/datasetCollections
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