Results 201 to 210 of about 27,485 (265)

Design of High‐Energy Anode for All‐Solid‐State Lithium Batteries–A Model with Borohydride‐Based Electrolytes

open access: yesAdvanced Materials Interfaces, EarlyView.
This study proposes a function‐sharing anode design to enable nonmetallic lithium insertion while maintaining intimate interfacial contact with the solid‐state electrolyte. A combination of lithium‐compatible and conformable borohydrides, highly conformable indium metal, less‐graphitized acetylene black, and a layer of highly graphitized massive ...
Keita Kurigami   +3 more
wiley   +1 more source

Phase Diagrams Enable Solid‐State Battery Design

open access: yesAdvanced Materials Interfaces, EarlyView.
Batteries are non‐equilibrium devices with inherent thermodynamic driving forces to react at interfaces, regardless of kinetics or operating conditions. Chemical potential mismatches across interfaces are dissipated via interfacial reactions. In this work, it is illustrated how phase diagrams and chemical potential maps predict degradation pathways but
Nathaniel L. Skeele, Matthias T. Agne
wiley   +1 more source

Effect of Nitrogen Dopant Agents in the Performance of Graphene-Based Cathodes for Li-S Batteries. [PDF]

open access: yesNanomaterials (Basel)
Licari A   +4 more
europepmc   +1 more source

Novel Cu(II)-based metal-organic framework STAM-1 as a sulfur host for Li-S batteries. [PDF]

open access: yesSci Rep
Niščáková V   +9 more
europepmc   +1 more source

Fe3O4-doped mesoporous carbon cathode with a plumber's nightmare structure for high-performance Li-S batteries. [PDF]

open access: yesNat Commun
Zhang H   +12 more
europepmc   +1 more source

Exploring multiphase conversion pathways in Li-S batteries through cryo-TEM and ML-assisted operando neutron scattering

open access: yes
von Mentlen J   +10 more
europepmc   +1 more source
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Advances in Li–S batteries

Journal of Materials Chemistry, 2010
Rechargeable Li–S batteries have received ever-increasing attention recently due to their high theoretical specific energy density, which is 3 to 5 times higher than that of Li ion batteries based on intercalation reactions. Li–S batteries may represent a next-generation energy storage system, particularly for large scale applications. The obstacles to
Xiulei Ji, Linda F. Nazar
openaire   +1 more source

Single-atom site catalysis in Li–S batteries

Physical Chemistry Chemical Physics, 2023
With their high theoretical energy density, Li–S batteries are regarded as the ideal battery system for next generation electrochemical energy storage.
Kun Wang   +5 more
openaire   +2 more sources

Insight into Sulfur Reactions in Li–S Batteries

ACS Applied Materials & Interfaces, 2014
Understanding and controlling the sulfur reduction species (Li2Sx, 1 ≤ x ≤ 8) under realistic battery conditions are essential for the development of advanced practical Li-S cells that can reach their full theoretical capacity. However, it has been a great challenge to probe the sulfur reduction intermediates and products because of the lack of methods.
Rui, Xu   +10 more
openaire   +2 more sources

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