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Showing 1 to 7 of 7 for “"primary batteries"”.

  1. Elucidating Concentration and Temperature-dependent Energy Limitations of a Novel Fluorinated-organosulfur Catholyte for Li Primary Batteries

    Increasing the energy density of Lithium (Li) primary batteries requires exploring novel electrochemical reactions. Herein, the novel Li–carbon cell with a liquid catholyte based on the reactant 4-nitrophenylsfur (NO₂-Ph-SF₅) is studied in detail with emphasis on its energy limitations under …

    mit Repository record for Elucidating Concentration and Temperature-dependent Energy Limitations of a Novel Fluorinated-organosulfur Catholyte for Li Primary Batteries (opens in a new tab)

  2. A Showcase of Functional Fluorous Materials and Their Applications

    … to be an important functional group for lithium primary batteries.

    mit Repository record for A Showcase of Functional Fluorous Materials and Their Applications (opens in a new tab)

  3. Synthesis and Characterization of Polymer Composite Materials For Lithium Battery Cathodes and Capacitors

    … of polymer composite materials used in lithium primary batteries and capacitors. The objective of the first part of the dissertation is to develop cathode materials based on silver vanadium oxide (SVO) coated with polypyrrole (PPy) having lower particle-to-particle resistance, lower initial …

    south-carolina Repository record for Synthesis and Characterization of Polymer Composite Materials For Lithium Battery Cathodes and Capacitors (opens in a new tab)

  4. Designing Electrolytes for Durable and Fast-Charging Alkali-Ion Batteries

    … storage and rational utilization of this energy, batteries play a crucial role in modern energy storage solutions. In addition to grid-scale storage, batteries power our electronics and electric vehicles, integrated with circuit design. Batteries have a long history, traced back to 19th century. …

    vt Repository record for Designing Electrolytes for Durable and Fast-Charging Alkali-Ion Batteries (opens in a new tab)

  5. Tailoring Fluoride/Fluorine Bond Activity for High-Energy Li and Li-ion Batteries

    … and SO₂ are representative examples for Li primary cathodes. In contrast, fluoride-based cathodes are generally less investigated, with only several instances, but all with exceedingly high theoretical energy densities, such as carbon-monofluoride (CFₓ), transition metal fluorides, and the …

    mit Repository record for Tailoring Fluoride/Fluorine Bond Activity for High-Energy Li and Li-ion Batteries (opens in a new tab)

  6. Nanomaterial design and fabrication for energy storage

    … and predict future trends. Non-rechargeable batteries are the predominant energy source for today’s commercial wireless sensors and both the energy and power demands dramatically reduce the lifetime of the primary batteries. The value of the useful data gathered is offset by the frequent …

    cork Repository record for Nanomaterial design and fabrication for energy storage (opens in a new tab)

  7. Molecular-Level Understanding of Electrochemical Reaction Mechanisms and Electrode Interphases in Metal-CFx Batteries

    … exploration. Metal anode and conversion-type batteries provide higher specific energy compared to conventional intercalation-based systems. Among these, metal-carbon monofluoride (CF<sub>x</sub>) batteries, such as lithium-CF<sub>x</sub> (Li/CF<sub>x</sub>), stand out due to their high …

    cuny Repository record for Molecular-Level Understanding of Electrochemical Reaction Mechanisms and Electrode Interphases in Metal-CFx Batteries (opens in a new tab)