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[PDF][PDF] Ionic conductivity and ion transport mechanisms of solid‐state lithium‐ion battery electrolytes: A review
This review article deals with the ionic conductivity of solid‐state electrolytes for lithium
batteries. It has discussed the mechanisms of ion conduction in ceramics, polymers, and …
batteries. It has discussed the mechanisms of ion conduction in ceramics, polymers, and …
The application road of silicon-based anode in lithium-ion batteries: From liquid electrolyte to solid-state electrolyte
With more and more mature applications of new energy and power systems, lithium-ion
batteries are bound to play an increasingly important role in the future. High specific energy …
batteries are bound to play an increasingly important role in the future. High specific energy …
[HTML][HTML] Ultrathin carbon layer coated MXene/PBO nanofiber films for excellent electromagnetic interference shielding and thermal stability
K Gong, Y Peng, A Liu, S Qi, H Qiu - Composites Part A: Applied Science …, 2024 - Elsevier
In this study, a carbon layer coated MXene/poly (p-phenylene-2, 6-benzobisoxazole)
nanofibers (PNFs)(MXene/PNF@ C) EMI shielding composite film was obtained through …
nanofibers (PNFs)(MXene/PNF@ C) EMI shielding composite film was obtained through …
A relaxor ferroelectric polymer with an ultrahigh dielectric constant largely promotes the dissociation of lithium salts to achieve high ionic conductivity
The extremely low room-temperature ionic conductivity of solid-state polymer electrolytes
(SPEs) ranging from 10− 7 to 10− 5 S cm− 1 seriously restricts their practical application in …
(SPEs) ranging from 10− 7 to 10− 5 S cm− 1 seriously restricts their practical application in …
[HTML][HTML] Advances in inorganic, polymer and composite electrolytes: Mechanisms of Lithium-ion transport and pathways to enhanced performance
The growing demand for enhanced batteries with higher energy density and safety is
pushing lithium-ion battery technology towards solid-state batteries. Replacing the liquid …
pushing lithium-ion battery technology towards solid-state batteries. Replacing the liquid …
Mainstream optimization strategies for cathode materials of sodium‐ion batteries
Sodium‐ion batteries are promising candidates for grid‐scale energy storage due to its
abundance and similarities to lithium‐ion batteries, whereas the lack of ideal cathode …
abundance and similarities to lithium‐ion batteries, whereas the lack of ideal cathode …
Liquid Metal Loaded Molecular Sieve: Specialized Lithium Dendrite Blocking Filler for Polymeric Solid‐State Electrolyte
All‐solid–state lithium metal batteries (LMBs) are currently one of the best candidates for
realizing the yearning high‐energy–density batteries with high safety. However, even …
realizing the yearning high‐energy–density batteries with high safety. However, even …
Mechanically strong and folding‐endurance Ti3C2Tx MXene/PBO nanofiber films for efficient electromagnetic interference shielding and thermal management
Electromagnetic interference (EMI) shielding materials with excellent flexibility and
mechanical properties and outstanding thermal conductivity have become a hot topic of …
mechanical properties and outstanding thermal conductivity have become a hot topic of …
Atomically thin materials for next-generation rechargeable batteries
Atomically thin materials (ATMs) with thicknesses in the atomic scale (typically< 5 nm) offer
inherent advantages of large specific surface areas, proper crystal lattice distortion …
inherent advantages of large specific surface areas, proper crystal lattice distortion …
A review on ion transport pathways and coordination chemistry between ions and electrolytes in energy storage devices
The design and construction of energy storage systems, such as batteries and
supercapacitors, represent one of the most pioneering research domains in scientific …
supercapacitors, represent one of the most pioneering research domains in scientific …