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Lithium imide

  • Defect Chemistry and Transport Properties of Solid State Materials for Energy Storage Applications

    Defect Chemistry and Transport Properties of Solid State Materials for Energy Storage Applications

  • Multi-Ionic Lithium Salts for Use in Solid Polymer

    Multi-Ionic Lithium Salts for Use in Solid Polymer

  • Hydrogen Absorption and Lithium Ion Conductivity in Li6nbr3 Howard, Matthew; Clemens, Oliver; Slater, Peter; Anderson, Paul

    Hydrogen Absorption and Lithium Ion Conductivity in Li6nbr3 Howard, Matthew; Clemens, Oliver; Slater, Peter; Anderson, Paul

  • Metal Nitride Ammonia Decomposition Catalysts†‡ Cite This: DOI: 10.1039/C8cp02824a Joshua W

    Metal Nitride Ammonia Decomposition Catalysts†‡ Cite This: DOI: 10.1039/C8cp02824a Joshua W

  • Metal Borohydrides and Derivatives

    Metal Borohydrides and Derivatives

  • Hydrophobic Ionic Liquids Hydrophobe Ionische Flüssigkeiten Liquides Ioniques Hydrophobes

    Hydrophobic Ionic Liquids Hydrophobe Ionische Flüssigkeiten Liquides Ioniques Hydrophobes

  • Effect of Halide Additives on the Hydrogen Desorption of Lithium Amide. Rosalind Davies

    Effect of Halide Additives on the Hydrogen Desorption of Lithium Amide. Rosalind Davies

  • Spodumene: the Lithium Market, Resources and Processes

    Spodumene: the Lithium Market, Resources and Processes

  • Étude Du Polymère Élastomère À Base D'acrylonitrile, HNBR, Pour Son Application Dans Les Batteries Li-Ion

    Étude Du Polymère Élastomère À Base D'acrylonitrile, HNBR, Pour Son Application Dans Les Batteries Li-Ion

  • University of Birmingham Ammonia Decomposition Catalysis Using

    University of Birmingham Ammonia Decomposition Catalysis Using

  • Crystal Structures and Phase Transformation of Deuterated Lithium Imide, Li2nd Michael P

    Crystal Structures and Phase Transformation of Deuterated Lithium Imide, Li2nd Michael P

  • PROPERTIES and STRUCTURES of Li-N BASED HYDROGEN STORAGE MATERIALS

    PROPERTIES and STRUCTURES of Li-N BASED HYDROGEN STORAGE MATERIALS

  • Ammonia Decomposition Catalysis Using Non-Stoichiometric Lithium Imide', Chemical Science, No

    Ammonia Decomposition Catalysis Using Non-Stoichiometric Lithium Imide', Chemical Science, No

  • Ammonia to Green Hydrogen Project Feasibility Study

    Ammonia to Green Hydrogen Project Feasibility Study

  • Background Data for the Chemical Elements

    Background Data for the Chemical Elements

  • Structure of Ternary Imide Li2ca(NH)2 and Hydrogen Storage

    Structure of Ternary Imide Li2ca(NH)2 and Hydrogen Storage

  • Download Author Version (PDF)

    Download Author Version (PDF)

  • (12) Patent Application Publication (10) Pub. No.: US 2016/0136386 A1 Vissman Et Al

    (12) Patent Application Publication (10) Pub. No.: US 2016/0136386 A1 Vissman Et Al

Top View
  • Lithium Compounds
  • Lithium Nitride-Based Materials for Hydrogen Storage
  • Low Dimensional Nanostructures of Fast Ion Conducting Lithium Nitride
  • Hydrogen Absorption and Lithium Ion Conductivity in Li6nbr3 Howard, Matthew; Clemens, O.; Slater, Peter; Anderson, Paul
  • Nonaqueous Liquid Electrolytes for Lithium-Based Rechargeable Batteries
  • (12) United States Patent (10) Patent No.: US 6,746,803 B1 Bauer Et Al
  • The Nordic Expert Group for Criteria Documentation of Health Risks from Chemicals. 131. Lithium and Lithium Compounds
  • Rapid Microwave Synthesis, Characterization and Reactivity of Lithium Nitride Hydride, Li4nh
  • Implications for Ammonia Catalysis and Hydrogen Storage
  • Infrared Spectroscopy of Minerals and Related Compounds, Springer Mineralogy, DOI 10.1007/978-3-319-25349-7 1050 References
  • (2013 Olin Palladium Award Address) Mathematical Modeling of Lithium Ion Cells and Batteries R
  • Maarten C. Verbraeken Phd Thesis
  • | Hao Hata Kama Maria De Un Militaan Van Die Matter
  • Lithium Amide Halides for Hydrogen Storage by Rosalind Davies
  • Engineering Solid Electrolytes for Lithium-Ion Battery Applications
  • Hydrogen-As-A-Future-Energy-Carrier
  • Effects of Doping Fecl3 on Hydrogen Storage Properties of Li-N-H System
  • ESRF Highlights 2006


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