Results 31 to 40 of about 10,503 (214)
Pre-treatments of Lithium Foil Surface for Improving the Cycling Life of Li Metal Batteries
Liquid electrolytes used in Li-ion batteries are flammable and slowly degrade to form a solid electrolyte interface (SEI) that irreversibly consumes lithium, decreasing the Coulombic efficiency of the battery.
Nicolas Delaporte+2 more
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All-solid-state lithium-ion batteries using Li+-ion conducting ceramic electrolytes have been focused on as attractive future batteries for electric vehicles and renewable energy conversion systems because high safety can be realized due to non ...
MAO SHOJI+2 more
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Among many lithium secondary batteries, lithium–sulfur batteries stand out because of their high theoretical specific energy, low cost, non-toxicity and the fact that they cause no environmental pollution.
Chao Zheng+8 more
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The establishment of three-electrode cells for all-solid-state lithium-ion batteries is an important issue to clarify the electrochemical behavior of the battery components and solve problems for the practical applications.
Atsunori Ikezawa+7 more
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Application of Solid Electrolytes in Solid-State Lithium-Ion Batteries [PDF]
With the growing demand for energy storage and the growing concern for environmental protection, solid-state lithium-ion batteries have become a promising technology. Solid electrolyte applications in solid- state lithium-ion batteries are the main topic
Deng Liwen
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Characterization of a Novel Chloride Li-ion Conductor Li2LuCl5
Materials with a high Li-ion conductivity and deformability are garnering interest for the facile fabrication of safe all-solid-state batteries with high energy densities.
Shin AIZU+3 more
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All‐solid‐state polymer lithium‐ion batteries are ideal choice for the next generation of rechargeable lithium‐ion batteries due to their high energy, safety and flexibility.
Wang Lyu+2 more
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Geometrical Effect of Active Material on Electrode Tortuosity in All-Solid-State Lithium Battery
In this study, the effect of the active material geometry on the tortuosity in the ion transport path of the electrode composite of an all-solid-state lithium battery was systematically analyzed in terms of the different design and process factors of an ...
So-Yeon Park+2 more
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Conversion reaction of TiFe hydride as anode material for all-solid-state Lithium-ion batteries
Electrochemical energy storage is considered a remarkable way of bridging the gap between demand and supply due to intermittent renewable energy production.
Rini Singh+3 more
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Fluorine‐Doped Antiperovskite Electrolyte for All‐Solid‐State Lithium‐Ion Batteries
AbstractA fluorine‐doped antiperovskite Li‐ion conductor Li2(OH)X (X=Cl, Br) is shown to be a promising candidate for a solid electrolyte in an all‐solid‐state Li‐ion rechargeable battery. Substitution of F− for OH− transforms orthorhombic Li2OHCl to a room‐temperature cubic phase, which shows electrochemical stability to 9 V versus Li+/Li and two ...
Yusheng Zhao+11 more
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