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Structure-Property Correlations in Aqueous Binary Na+/K+-CH3COO- Highly Concentrated Electrolytes.
Khalid, Shahid; Pianta, Nicolò; Bonizzoni, Simone; Ferrara, Chiara; Lorenzi, Roberto; Paleari, Alberto; Johansson, Patrik; Mustarelli, Piercarlo; Ruffo, Riccardo.
Afiliação
  • Khalid S; Department of Materials Science, University of Milano-Bicocca, via Cozzi 55, 20125 Milano, Italy.
  • Pianta N; Department of Materials Science, University of Milano-Bicocca, via Cozzi 55, 20125 Milano, Italy.
  • Bonizzoni S; Department of Materials Science, University of Milano-Bicocca, via Cozzi 55, 20125 Milano, Italy.
  • Ferrara C; Department of Materials Science, University of Milano-Bicocca, via Cozzi 55, 20125 Milano, Italy.
  • Lorenzi R; National Reference Center for Electrochemical Energy Storage (GISEL), Consorzio Interuniversitario Nazionale per la Scienza e Tecnologia dei Materiali (INSTM), 50121 Firenze, Italy.
  • Paleari A; Department of Materials Science, University of Milano-Bicocca, via Cozzi 55, 20125 Milano, Italy.
  • Johansson P; Department of Materials Science, University of Milano-Bicocca, via Cozzi 55, 20125 Milano, Italy.
  • Mustarelli P; Department of Physics, Chalmers University of Technology, SE-41296 Göteborg, Sweden.
  • Ruffo R; Department of Materials Science, University of Milano-Bicocca, via Cozzi 55, 20125 Milano, Italy.
J Phys Chem C Nanomater Interfaces ; 127(20): 9823-9832, 2023 May 25.
Article em En | MEDLINE | ID: mdl-37255926
ABSTRACT
Highly concentrated aqueous binary solutions of acetate salts are promising systems for different electrochemical applications, for example, energy storage devices. The very high solubility of CH3COOK allows us to obtain water-in-salt electrolyte concentrations, thus reducing ion activity and extending the cathodic stability of an aqueous electrolyte. At the same time, the presence of Li+ or Na+ makes these solutions compatible with intercalation materials for the development of rechargeable alkaline-ion batteries. Although there is a growing interest in these systems, a fundamental understanding of their physicochemical properties is still lacking. Here, we report and discuss the physicochemical and electrochemical properties of a series of solutions based on 20 mol kg-1 CH3COOK with different concentrations of CH3COONa. The most concentrated solution, 20 mol kg-1 CH3COOK + 7 mol kg-1 CH3COONa, gives the best compromise between transport properties and electrochemical stability, displaying a conductivity of 21.2 mS cm-1 at 25 °C and a stability window of up to 3 V in "ideal" conditions, i.e., using a small surface area and highly electrocatalytic electrode in a flooded cell. Careful Raman spectroscopy analyses help to address the interaction network, the phase evolution with temperature, and the crystallization kinetics.

Texto completo: 1 Base de dados: MEDLINE Idioma: En Ano de publicação: 2023 Tipo de documento: Article

Texto completo: 1 Base de dados: MEDLINE Idioma: En Ano de publicação: 2023 Tipo de documento: Article