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Lithium superoxide
Investigation of Lithium Superoxide-Based Batteries
Global Lithium Sources—Industrial Use and Future in the Electric Vehicle Industry: a Review
Charging Ahead FINDING INVESTMENT OPPORTUNITIES from the GREAT BATTERY TAKE-OFF
Peroxides, Su Peroxides, and Ozonides of Alkali and Alkaline Earth Metals
Batteries: Avoiding Oxygen
Structure of Lithium Peroxide † || ‡ ,‡ ‡ Maria K
Cycling Non-Aqueous Lithium-Air Batteries with Dimethyl Sulfoxide and Sulfolane Co-Solvent Evaluating Influence of Sulfolane on Cell Chemistry
Technological Gaps Inhibiting the Exploitation of Crms Primary Resources
Charge Transport in Alkali-Metal Superoxides
Recycling of Spent Lithium Nickel-Cobalt Batteries
Predicted Lithium Oxide Compounds and Superconducting Low-Pressure Lio4
Laura Donegan.Pdf
Evaluating Chemical Bonding in Dioxides for the Development Of
Novel Chemistry of Lithium Oxides and Superconducting Low-Pressure Lio4
Characterization of Lithium Peroxide Formation in Lithium Air Battery
An Engineering Analysis On
Investigation on Lithium Superoxide-Based Batteries
Global Supply, Future Demand and Price Development
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Bibliographies
Lithium Potential in Namibia-En.Pdf
Extraction of Lithium from Primary and Secondary Sources by Pre-Treatment, Leaching and Separation: a Comprehensive Review
Lithium Biology
Recent Research Progress on Non-Aqueous Lithium-Air Batteries from Argonne National Laboratory
Albemarle Investor Day Presentation
Alkali Metal Ozonides. Differential Heating Curves Compared. 133
United States Patent Office Patented June 30, 1964
Periodic Trends and the S-Block Elements”, Chapter 21 from the Book Principles of General Chemistry (Index.Html) (V
Variable Character of OOO and MOO Bonding in Side-On
Lithiumcarbonatecontent(Li Other Commoncompounds,Are Shownintable 2