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Showing 1 to 9 of 9 for “"Lithium Ion Battery Cathode"”.

  1. Multinuclear NMR Investigations of Local Structure, Distortions and Redox Mechanisms in Layered Lithium Ion Battery Cathode Materials

    Lithium ion (Li ion) battery technology has enabled a complete revolution in consumer electronics and is beginning to have a similar impact on transport. Increased adoption of electric vehicles is essential to reduce anthropogenic carbon emissions and combat climate change. For vehicular …

    cambridge Repository record for Multinuclear NMR Investigations of Local Structure, Distortions and Redox Mechanisms in Layered Lithium Ion Battery Cathode Materials (opens in a new tab)

  2. High-throughput data mined prediction of inorganic compounds and computational discovery of new lithium-ion battery cathode materials

    The ability to computationally predict the properties of new materials, even prior to their synthesis, has been made possible due to the current accuracy of modern ab initio techniques. In some cases, high-throughput computations can be used to create large data sets of potential compounds and …

    mit Repository record for High-throughput data mined prediction of inorganic compounds and computational discovery of new lithium-ion battery cathode materials (opens in a new tab)

  3. Nanostructured electrodes for lithium ion batteries using biological scaffolds

    … in this work for controlling nanostructures of lithium ion battery electrodes which is a critical process in developing electrodes materials for high power applications. The M13 biological toolkit provides specificity, versatility and multifunctionality for controlling nanostructure of the …

    mit Repository record for Nanostructured electrodes for lithium ion batteries using biological scaffolds (opens in a new tab)

  4. Novel Syntheses and Surface Modifications of Electrode Materials for Superior Lithium-Ion Batteries

    Rechargeable lithium-ion battery is one of the most promising energy conversion and storage systems that offers high energy and powder densities, long service life and assuring safety. Performance of lithium-ion batteries crucially relies on electrochemical characteristics of electrode materials, …

    lsu-thes Repository record for Novel Syntheses and Surface Modifications of Electrode Materials for Superior Lithium-Ion Batteries (opens in a new tab)

  5. Heterogeneous Redox Chemistries in Layered Oxide Materials for Lithium-Ion Batteries

    The invention of the lithium-ion battery has revolutionized the passenger transportation field in recent years, and it has emerged as one of the state-of-the-art solutions to address greenhouse gases emission and air pollution issues. Layered oxide lithium-ion battery cathode materials have become …

    vt Repository record for Heterogeneous Redox Chemistries in Layered Oxide Materials for Lithium-Ion Batteries (opens in a new tab)

  6. Operando investigations of mechanical changes in lithium-ion batteries

    Li-ion batteries are increasingly present in modern life. They principally power compact, handheld devices and electric vehicles. Mechanical changes are always occurring within batteries due to expansion and contraction of the active materials during lithiation and delithiation, degradation of the …

    uiuc Repository record for Operando investigations of mechanical changes in lithium-ion batteries (opens in a new tab)

  7. Visualising Energy Landscapes Through Manifold Learning

    … a conceptual framework for structure prediction, and a detailed understanding of their topological features is necessary to develop efficient methods for their exploration. The ability to visualise these surfaces is essential, but the high dimensionality of the corresponding configuration …

    cambridge Repository record for Visualising Energy Landscapes Through Manifold Learning (opens in a new tab)