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Showing 1–4 of 4 results
Advanced filters: Author: Frans G. B. Ooms Clear advanced filters
  • The development of anode-free batteries requires current collectors able to deposit and remove Li metal upon cycling efficiently. Here, the authors report the use of high dielectric porous BaTiO3 to avoid the formation of inhomogeneous Li metal depositions during anode-free cell cycling.

    • Chao Wang
    • Ming Liu
    • Marnix Wagemaker
    ResearchOpen Access
    Nature Communications
    Volume: 12, P: 1-11
  • Interface chemistry is essential for highly reversible lithium-metal batteries. Here the authors investigate amide-based electrolyte that lead to desirable interface species, resulting in dense Li-metal plating and top-down Li-metal stripping, responsible for the highly reversible cycling.

    • Qidi Wang
    • Zhenpeng Yao
    • Baohua Li
    ResearchOpen Access
    Nature Communications
    Volume: 11, P: 1-11
  • More transparent protocol reporting and comprehensive battery cell data are needed. Twenty-one research groups joined forces to assess solid-state battery performance and found considerable differences in assembly protocols that cause variable results.

    • Sebastian Puls
    • Elina Nazmutdinova
    • Nella M. Vargas-Barbosa
    ResearchOpen Access
    Nature Energy
    Volume: 9, P: 1310-1320
  • Rechargeable lithium metal batteries could offer a major leap in energy capacity but suffer from the electrolyte reactivity and dendrite growth. Here the authors apply neutron depth profiling to provide quantitative insight into the evolution of the Li-metal morphology during plating and stripping.

    • Shasha Lv
    • Tomas Verhallen
    • Marnix Wagemaker
    ResearchOpen Access
    Nature Communications
    Volume: 9, P: 1-12