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In response to the requirement for alternative energy conversion and storage methods, metal-glycerolates (MG) and their analogs are considered promising classes of electrode material that can be synthesized in various designs. Recently, the concept of high-entropy configuration and multimetallic systems has gained attention in the field of electrocatalysis. In fact, the presence of five or more metals in a single-phase material can produce unique and unexpected properties. Thus, it becomes crucial to explore different metal combinations and evaluate their synergistic interaction as a result of these combinations. Therefore, in this work, a scalable solvothermal method was used to synthesize a high-entropy glycerolate (HEG) containing Ni, Zn, Mn, Mg, and Co ions (HEG) and their respective sub-systems such as NiG, NiMnG, and NiMnZnG. The SEM-EDS images showed the excellent distribution of the metal cations in the obtained microspheres. Surprisingly, our experiments demonstrated that even in reaching a single-phase HEG, the oxygen evolution reaction (OER) performance measured in 1 M KOH electrolyte did not surpass the benefit effect observed in the NiG-based carbon paste with an overpotential of 310 mV (@10 mA cm–2), against 341 mV (@10 mA cm–2) of HEG. Moreover, the NiG shows good stability toward OER even after 24 h, which is attributed to the NiOOH active phase generated during the electrochemical cycling.more » « less
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Gonçalves, Josué M.; Hennemann, Artur Luís; Ruiz-Montoya, José G.; Martins, Paulo R.; Araki, Koiti; Angnes, Lúcio; Shahbazian-Yassar, Reza (, Coordination Chemistry Reviews)
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Gonçalves, Josué M.; Ghorbani, Alireza; Ritter, Timothy G.; Lima, Irlan S.; Tamadoni Saray, Mahmoud; Phakatkar, Abhijit H.; Silva, Vinicius D.; Pereira, Rafael S.; Yarin, Alexander L.; Angnes, Lúcio; et al (, Journal of Colloid and Interface Science)
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Gonçalves, Josué M.; Lima, Irlan S.; Phakatkar, Abhijit H.; Pereira, Rafael S.; Martins, Paulo R.; Araki, Koiti; Angnes, Lúcio; Shahbazian-Yassar, Reza (, Materials Characterization)
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