Despite the significant research that has been carried out to improve cycling performance of lithium ion batteries (LIB) with silicon (Si) based composite electrodes, limited studies have been performed on these materials to evaluate the effects of internal microstructural changes and stress evolution on the electrochemical performance. Here, combined ex situ and in situ investigations on the accommodation of volume expansion in Si-based nanocomposite electrodes are reported. This work emphasizes the importance of conductive agents in light of the poor electronic conductivity of Si. A detailed comparison between commonly used carbon black (CB) and reduced graphene oxide (rGO) shows that these materials have substantial effects on microstruc...
Composite anodes based on Si and reduced graphene oxide (RGO) have been prepared using commercial Si...
Silicon based anodes are prospective candidates for high energy density lithium ion batteries, but s...
The demand for high performance lithium-ion batteries (LIBs) is increasing due to widespread use of ...
In spite of the fact that there are plenty of recent studies on Si/graphene composite anodes, the in...
Reduced graphene oxide (rGO) is used as a conductive additive for nanosilicon-based lithium battery ...
The massive development of Li-ion technology has allowed for massive spreading of portable electroni...
Si has been considered as a promising alternative anode for next-generation Li-ion batteries (LIBs) ...
Silicon is often added to graphite battery electrodes to enhance the electrode-specific capacity, bu...
International audienceReduced graphene oxide (rGO) is used as a conductive additive for nanosilicon-...
Lithium-ion battery technology has improved tremendously since it was first commercialized in the 19...
Silicon (Si) is a promising anode material for next-generation Li-ion batteries. The nanometer-sized...
Graphite is currently the most common anode material used in commercial lithium-ion batteries. Durin...
Composite anodes based on Si and reduced graphene oxide (RGO) have been prepared using commercial Si...
Silicon based anodes are prospective candidates for high energy density lithium ion batteries, but s...
The demand for high performance lithium-ion batteries (LIBs) is increasing due to widespread use of ...
In spite of the fact that there are plenty of recent studies on Si/graphene composite anodes, the in...
Reduced graphene oxide (rGO) is used as a conductive additive for nanosilicon-based lithium battery ...
The massive development of Li-ion technology has allowed for massive spreading of portable electroni...
Si has been considered as a promising alternative anode for next-generation Li-ion batteries (LIBs) ...
Silicon is often added to graphite battery electrodes to enhance the electrode-specific capacity, bu...
International audienceReduced graphene oxide (rGO) is used as a conductive additive for nanosilicon-...
Lithium-ion battery technology has improved tremendously since it was first commercialized in the 19...
Silicon (Si) is a promising anode material for next-generation Li-ion batteries. The nanometer-sized...
Graphite is currently the most common anode material used in commercial lithium-ion batteries. Durin...
Composite anodes based on Si and reduced graphene oxide (RGO) have been prepared using commercial Si...
Silicon based anodes are prospective candidates for high energy density lithium ion batteries, but s...
The demand for high performance lithium-ion batteries (LIBs) is increasing due to widespread use of ...