A facile and scalable method is reported to fabricate Si-graphene nanocomposite as anode material for Li-ion batteries (LIBs) with high capacity and capacity retention performance. The Si-graphene electrode showed an initial discharge capacity of 1307 mAh g−1 at a current rate of 0.1C. At the 25th cycle, the electrode retained a discharge capacity of 1270 mAh g−1, with an excellent capacity retention of 97%. At the 50th cycle, the electrode still retained high capacity retention of 89%. The improved capacity retention of Si-graphene anode compared with Si anode is attributed to the mechanical flexibility of graphene that compromises the volume expansion of Si during the lithiation/delithiation process. The electrochemical impedance measurem...
Abstract Embedded Si/graphene composite was fabricated by a novel method, which was in situ generate...
Silicon-based composites have received significant interest as a high-capacity anode material for hi...
Department of Energy Engineering(Battery Science and Technology)In order to keep pace with the incre...
The demand for high performance Lithium-ion batteries (LIBs) is increasing due to widespread use of ...
The demand for high performance lithium-ion batteries (LIBs) is increasing due to widespread use of ...
A graphene/silicon nanocomposite has been synthesized, characterized and tested as anode active mate...
Si/graphene composite was prepared by simply mixing of commercially available nanosize Si and graphe...
Si/graphene composite was prepared by simply mixing of commercially available nanosize Si and graphe...
Silicon nanoparticles have been successfully inserted into graphene sheets via a novel method combin...
Silicon, one of the most promising candidates to replace graphite anodes in lithium-ion batteries (L...
The realization of a high-performance Li-ion full-cell with an anode prominently based on silicon, w...
Composite anodes based on Si and reduced graphene oxide (RGO) have been prepared using commercial Si...
Si nanowires in graphene papers were successfully prepared by supercritical fluid–liquid–solid (SFLS...
A silicon-graphene heterostructure provides optimal electrochemical performance as anode nanomateria...
Flexible, free-standing, paper-like, graphene-silicon composite materials have been synthesized by a...
Abstract Embedded Si/graphene composite was fabricated by a novel method, which was in situ generate...
Silicon-based composites have received significant interest as a high-capacity anode material for hi...
Department of Energy Engineering(Battery Science and Technology)In order to keep pace with the incre...
The demand for high performance Lithium-ion batteries (LIBs) is increasing due to widespread use of ...
The demand for high performance lithium-ion batteries (LIBs) is increasing due to widespread use of ...
A graphene/silicon nanocomposite has been synthesized, characterized and tested as anode active mate...
Si/graphene composite was prepared by simply mixing of commercially available nanosize Si and graphe...
Si/graphene composite was prepared by simply mixing of commercially available nanosize Si and graphe...
Silicon nanoparticles have been successfully inserted into graphene sheets via a novel method combin...
Silicon, one of the most promising candidates to replace graphite anodes in lithium-ion batteries (L...
The realization of a high-performance Li-ion full-cell with an anode prominently based on silicon, w...
Composite anodes based on Si and reduced graphene oxide (RGO) have been prepared using commercial Si...
Si nanowires in graphene papers were successfully prepared by supercritical fluid–liquid–solid (SFLS...
A silicon-graphene heterostructure provides optimal electrochemical performance as anode nanomateria...
Flexible, free-standing, paper-like, graphene-silicon composite materials have been synthesized by a...
Abstract Embedded Si/graphene composite was fabricated by a novel method, which was in situ generate...
Silicon-based composites have received significant interest as a high-capacity anode material for hi...
Department of Energy Engineering(Battery Science and Technology)In order to keep pace with the incre...