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Showing 1–5 of 5 results
Advanced filters: Author: Ben Jagger Clear advanced filters
  • K-ion batteries may have rate advantages over Li-ion batteries due to the larger size of the cation. Here, the authors characterize the ionic transport and thermodynamic properties of non-aqueous K-ion electrolyte solutions demonstrating higher K-ion mobility than the Li-ion counterpart.

    • Shobhan Dhir
    • Ben Jagger
    • Mauro Pasta
    ResearchOpen Access
    Nature Communications
    Volume: 14, P: 1-12
  • Potassium-ion batteries are a promising alternative to lithium-ion batteries. Here, authors characterise the solid-state diffusivities and exchange current densities of leading negative and positive electrode materials, enabling full-cell modelling to identify the properties limiting rate capability.

    • Shobhan Dhir
    • John Cattermull
    • Mauro Pasta
    ResearchOpen Access
    Nature Communications
    Volume: 15, P: 1-12
  • All-solid-state lithium-based batteries require high stack pressure during operation. Here, we investigate the mechanical, transport, and interfacial properties of Li-rich magnesium alloy and show enhanced performance at low pressure and ambient temperature for alloy-based electrodes with less than 5 at% Mg content.

    • Jack Aspinall
    • Krishnakanth Sada
    • Mauro Pasta
    ResearchOpen Access
    Nature Communications
    Volume: 15, P: 1-12
  • Preparing suitable lithium anodes is crucial for high-performance solid-state batteries. This study evaluates methods for producing thin lithium films, emphasizing thermal evaporation as a cost-effective approach while estimating associated pack costs.

    • Matthew Burton
    • Sudarshan Narayanan
    • Mauro Pasta
    ResearchOpen Access
    Nature Energy
    Volume: 10, P: 135-147