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Showing 1 to 3 of 3 for “"Potassium-Ion Batteries"”.

  1. Crystal structure prediction for rechargeable battery anodes

    … of high-throughput crystal structure prediction calculations to predict the compositional phase diagrams of material systems that have relevance as conversion anodes in sodium- and potassium-ion batteries. The aim is to discover phase diagrams that can balance high capacity with low volume …

    cambridge Repository record for Crystal structure prediction for rechargeable battery anodes (opens in a new tab)

  2. Beyond Lithium-Ion Technology: Lithium-Sulfur and Potassium-Ion for Better and Cheaper Batteries

    … to power a sustainable future. While lithium-ion batteries (LIBs) have revolutionised our modern lifestyles, the cost of lithium resources and limited energy density that can be safely accessed have limited their potential as large-scale energy storage systems. Lithium-sulfur batteries (LSBs) …

    cambridge Repository record for Beyond Lithium-Ion Technology: Lithium-Sulfur and Potassium-Ion for Better and Cheaper Batteries (opens in a new tab)

  3. Ordered macroporous metal oxides and carbonaceous composites for Li-ion and beyond Li-ion batteries

    This thesis provides an in-depth investigation of three-dimensional ordered macroporous materials, specifically inverse opal materials, for electrochemical energy storage systems, particularly rechargeable batteries. Exploring the potential of composite structures, this research focuses on …

    cork Repository record for Ordered macroporous metal oxides and carbonaceous composites for Li-ion and beyond Li-ion batteries (opens in a new tab)