An advanced lithium ion sulfur battery is constructed on the foundation of spontaneous electrochemical exfoliation and lithiation of graphite in nonaqueous electrolytes, in which to produce a high-quality graphene matrix for the sulfur cathode and lithiated graphite for the anode, respectively. On one hand, the high-quality graphene, obtained via spontaneous electrochemical exfoliation of graphite in propylene-carbonate-based electrolyte, works as a matrix to improve the conductivity of sulfur and trap the polysulfides. On the other hand, the lithiated graphite anode, obtained by spontaneous electrochemical lithiation of graphite in ethylene-carbonate-based electrolyte with 5 wt % fluoroethylene-carbonate additive, provides ample lithium io...
Graphene/sulfur@graphene composite structure as a cathode material is synthesized with a facile meth...
An efficient lithium‐ion battery was assembled by using an enhanced sulfur‐based cathode and a silic...
An efficient lithium‐ion battery was assembled by using an enhanced sulfur‐based cathode and a silic...
A lithium-ion battery is reported using a sulfur-carbon composite cathode, a graphite anode, and a d...
A new composite structure of graphene-sulfur with a high electrochemical performance is proposed. Sc...
Herein we investigate a lithium sulfur battery suitably combining alternative cathode design and rel...
Herein we investigate a lithium sulfur battery suitably combining alternative cathode design and rel...
Over the last decade, vast improvements have been made in the field of lithium-sulfur batteries brin...
A lithium-ion battery is reported using a sulfur–carbon composite cathode, a graphite anode, and a d...
Herein we investigate a lithium sulfur battery suitably combining alternative cathode design and rel...
Sulfur/graphene nanocomposite material has been prepared by incorporating sulfur into the graphene f...
Lithium-sulfur (Li-S) batteries are postulated as next-generation electrochemical energy storage dev...
A novel lithiated Si�S battery benefited by an optimized solid-like electrolyte (OSE) is demonstrate...
Sulfur represents a low-cost, sustainable, and high theoretical capacity cathode material for lithiu...
Lithium-sulfur (Li-S) batteries are postulated as next-generation electrochemical energy storage dev...
Graphene/sulfur@graphene composite structure as a cathode material is synthesized with a facile meth...
An efficient lithium‐ion battery was assembled by using an enhanced sulfur‐based cathode and a silic...
An efficient lithium‐ion battery was assembled by using an enhanced sulfur‐based cathode and a silic...
A lithium-ion battery is reported using a sulfur-carbon composite cathode, a graphite anode, and a d...
A new composite structure of graphene-sulfur with a high electrochemical performance is proposed. Sc...
Herein we investigate a lithium sulfur battery suitably combining alternative cathode design and rel...
Herein we investigate a lithium sulfur battery suitably combining alternative cathode design and rel...
Over the last decade, vast improvements have been made in the field of lithium-sulfur batteries brin...
A lithium-ion battery is reported using a sulfur–carbon composite cathode, a graphite anode, and a d...
Herein we investigate a lithium sulfur battery suitably combining alternative cathode design and rel...
Sulfur/graphene nanocomposite material has been prepared by incorporating sulfur into the graphene f...
Lithium-sulfur (Li-S) batteries are postulated as next-generation electrochemical energy storage dev...
A novel lithiated Si�S battery benefited by an optimized solid-like electrolyte (OSE) is demonstrate...
Sulfur represents a low-cost, sustainable, and high theoretical capacity cathode material for lithiu...
Lithium-sulfur (Li-S) batteries are postulated as next-generation electrochemical energy storage dev...
Graphene/sulfur@graphene composite structure as a cathode material is synthesized with a facile meth...
An efficient lithium‐ion battery was assembled by using an enhanced sulfur‐based cathode and a silic...
An efficient lithium‐ion battery was assembled by using an enhanced sulfur‐based cathode and a silic...