Nanostructuring has been shown to be fruitful in addressing the problems of high-capacity Si anodes. However, issues with the high cost and poor Coulombic eciencies of nanostructured Si still need to be resolved. Si microparticles are a low-cost alternative but, unlike Si nanoparticles, suer from unavoidable particle fracture during electrochemical cycling, thus making stable cycling in a real battery impractical. Here we introduce a method to encapsulate Si microparticles (???1–3 µm) using conformally synthesized cages of multilayered graphene. The graphene cage acts as a mechanically strong and flexible buer during deep galvanostatic cycling, allowing the microparticles to expand and fracture within the cage while retaining el...
Silicon-based composites have received significant interest as a high-capacity anode material for hi...
A multilayered structural silicon-reduced graphene oxide electrode with superior electrochemical per...
Although various Si-based graphene nanocomposites provide enhanced electrochemical performance, thes...
Silicon (Si) shows promise as an anode material in lithium-ion batteries due to its very high specif...
In spite of the fact that there are plenty of recent studies on Si/graphene composite anodes, the in...
Managing interfacial instability is crucial for enhancing cyclability in lithium-ion batteries (LIBs...
Silicon nanoparticles have been successfully inserted into graphene sheets via a novel method combin...
Silicon (Si) is a promising anode material for next-generation Li-ion batteries. The nanometer-sized...
The severe volume change and aggregation of silicon nanoparticles (SiNPs) when used as an anode for ...
Although various Si-based graphene nanocomposites provide enhanced electrochemical performance, thes...
Inspired by the natural corn structure, a Si@hollow graphene shell@graphene (Si@GS@G) anode material...
Incorporating silicon (Si) in anodes has shown great promise for the development of high capacity Li...
Silicon has been considered to be an attractive high-capacity anode material for next-generation lit...
Submicrometer-sized capsules made of Si nanoparticles wrapped by crumpled graphene shells were made ...
Microsized silicon powders have great potential for high capacity anode materials in next-generation...
Silicon-based composites have received significant interest as a high-capacity anode material for hi...
A multilayered structural silicon-reduced graphene oxide electrode with superior electrochemical per...
Although various Si-based graphene nanocomposites provide enhanced electrochemical performance, thes...
Silicon (Si) shows promise as an anode material in lithium-ion batteries due to its very high specif...
In spite of the fact that there are plenty of recent studies on Si/graphene composite anodes, the in...
Managing interfacial instability is crucial for enhancing cyclability in lithium-ion batteries (LIBs...
Silicon nanoparticles have been successfully inserted into graphene sheets via a novel method combin...
Silicon (Si) is a promising anode material for next-generation Li-ion batteries. The nanometer-sized...
The severe volume change and aggregation of silicon nanoparticles (SiNPs) when used as an anode for ...
Although various Si-based graphene nanocomposites provide enhanced electrochemical performance, thes...
Inspired by the natural corn structure, a Si@hollow graphene shell@graphene (Si@GS@G) anode material...
Incorporating silicon (Si) in anodes has shown great promise for the development of high capacity Li...
Silicon has been considered to be an attractive high-capacity anode material for next-generation lit...
Submicrometer-sized capsules made of Si nanoparticles wrapped by crumpled graphene shells were made ...
Microsized silicon powders have great potential for high capacity anode materials in next-generation...
Silicon-based composites have received significant interest as a high-capacity anode material for hi...
A multilayered structural silicon-reduced graphene oxide electrode with superior electrochemical per...
Although various Si-based graphene nanocomposites provide enhanced electrochemical performance, thes...