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An Electrically Rechargeable Zinc/Air Cell with an Aqueous Choline Acetate Electrolyte

Due to the feasibility of an electrically rechargeable zinc/air cell made of a zinc foil as active material, an aqueous choline acetate (ChAcO) mixture as an electrolyte and a spinel MnCo(2)O(4) (MCO) and NiCo(2)O(4) (NCO) as a bi-functional oxygen catalyst was investigated in this work. The 30 wt.%...

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Detalles Bibliográficos
Autores principales: Sakthivel, Mariappan, Batchu, Sai Praneet, Shah, Abbas Ali, Kim, Kwangmin, Peters, Willi, Drillet, Jean-Francois
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7372399/
https://www.ncbi.nlm.nih.gov/pubmed/32635233
http://dx.doi.org/10.3390/ma13132975
Descripción
Sumario:Due to the feasibility of an electrically rechargeable zinc/air cell made of a zinc foil as active material, an aqueous choline acetate (ChAcO) mixture as an electrolyte and a spinel MnCo(2)O(4) (MCO) and NiCo(2)O(4) (NCO) as a bi-functional oxygen catalyst was investigated in this work. The 30 wt.% water-containing aqueous ChAcO solution showed high contact angles close to those of KOH favoring triple-phase boundary formation in the gas diffusion electrode. Conductivity and pH value of 30 wt.% H(2)O/ChAcO amounted to 5.9 mS cm(−1) and 10.8, respectively. Best results in terms of reversible capacity and longevity of zinc/air cell were yielded during 100 h charge/discharge with the MnCo(2)O(4) (MCO) air electrode polarization procedure at 100 µA cm(−2) (2.8 mA g(−1)(zinc)). The corresponding reversible capacity amounted to 25.4 mAh (28% depth of discharge (DOD)) and the energy efficiency ranged from 29–54% during the first and seventh cycle within a 1500 h polarization period. Maximum active material utilization of zinc foil at 100 µA cm(−2) was determined to 38.1 mAh (42% DOD) whereas a further charging step was not possible due to irreversible passivation of the zinc foil surface. A special side-by-side optical cell was used to identify reaction products of the zinc/air system during a single discharge step in aqueous ChAcO that were identified as Zn(OH)(2) and ZnO by Raman analysis while no carbonate was detected.