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Showing 1 to 7 of 7 for “"lithium titanate"”.

  1. In-situ Polymerization of Methacrylate based Solid Polymer Electrolyte for Solid State Lithium-ion Batteries

    … vehicles (EVs) becoming mainstream, energy dense lithium-ion batteries (LIBs) are the need of the hour. Conventional liquid electrolyte batteries for LIBs may pose a safety hazard due to the use of flammable organic electrolytes with high vapor pressure. Solid state batteries (SSB) may become a …

    gatech Repository record for In-situ Polymerization of Methacrylate based Solid Polymer Electrolyte for Solid State Lithium-ion Batteries (opens in a new tab)

  2. Tailoring Li₄Ti₅O₁₂ Thin Film Carrier Kinetics Through Solid Solution Doping for Battery and Memristor Applications

    A Lithium titanate, Li₄Ti₅O₁₂ (LTO4), due to its zero-strain behavior during cycling, excellent chemical stability and cyclability, is a promising anode material for solid-state batteries (SSB) applications. As a thin film, its applications expand to integrated circuits, sensors, flexible …

    mit Repository record for Tailoring Li₄Ti₅O₁₂ Thin Film Carrier Kinetics Through Solid Solution Doping for Battery and Memristor Applications (opens in a new tab)

  3. A multi-functional electrolyte for lithium-ion batteries

    Thermal management of lithium-ion batteries (LIBs) is paramount for multi-cell packs, such as those found in electric vehicles, to ensure safe and sustainable operation. Thermal management systems (TMSs) maintain cell temperatures well below those associated with capacity fade and thermal runaway …

    colostate Repository record for A multi-functional electrolyte for lithium-ion batteries (opens in a new tab)

  4. A technology impact forecasting framework for the comparative life cycle cost and carbon assessment of alternative bus fleets

    … higher. Opportunity charged electric buses with lithium-titanate batteries are the most effective at mitigating greenhouse-gas emissions per additional cost to the operator. A trade-off between dependence on battery capacity and high-power charging infrastructure is highlighted. The framework …

    qu-belfast Repository record for A technology impact forecasting framework for the comparative life cycle cost and carbon assessment of alternative bus fleets (opens in a new tab)

  5. Development of Advanced Nanomaterials for Potential Lithium-Ion Battery Application

    Lithium-ion batteries (LIBs) are promising energy storage media under serious consideration for practical applications in electric vehicle (EVs) and hybrid electric vehicles (HEVs). However, to meet the requirements for EVs and HEVs, the performance of commercially available LIBs needs to be …

    uwo Repository record for Development of Advanced Nanomaterials for Potential Lithium-Ion Battery Application (opens in a new tab)

  6. Hierarchical Carbon Structures for Advanced High Areal Capacity Lithium-Ion Battery Electrodes

    … vehicles calls for a matching development in lithium-ion batteries (LIBs) that offer high power density, energy density, and long cycle life. However, LIBs based on traditional layered metal oxide cathodes and graphite anodes are quickly approaching their specific energy limits. The …

    cambridge Repository record for Hierarchical Carbon Structures for Advanced High Areal Capacity Lithium-Ion Battery Electrodes (opens in a new tab)