Silicon (Si) shows promise as an anode material in lithium-ion batteries due to its very high specific capacity. However, Si is highly brittle, and in an effort to prevent Si from fracturing, the research community has migrated from the use of Si films to Si nanoparticle based electrodes. However, such a strategy significantly reduces volumetric energy density due to the porosity of Si nanoparticle electrodes. Here we show that contrary to conventional wisdom, Si films can be stabilized by two strategies: (a) anchoring the Si films to a carbon nanotube macrofilm (CNM) current collector and (b) draping the films with a graphene monolayer. After electrochemical cycling, the graphene-coated Si films on CNM resembled a tough mud-cracked surface...
We present a detailed study on graphene-coated aluminum thin films for Li-ion battery anode applicat...
The demand for high performance Lithium-ion batteries (LIBs) is increasing due to widespread use of ...
Inspired by the natural corn structure, a Si@hollow graphene shell@graphene (Si@GS@G) anode material...
In spite of the fact that there are plenty of recent studies on Si/graphene composite anodes, the in...
Incorporating silicon (Si) in anodes has shown great promise for the development of high capacity Li...
A silicon-graphene heterostructure provides optimal electrochemical performance as anode nanomateria...
Silicon nanoparticles have been successfully inserted into graphene sheets via a novel method combin...
Graphene Nanoscrolls with Confined Silicon Nanoparticles as a Durable Anode for Lithium-Ion Batterie
Silicon-based composites have received significant interest as a high-capacity anode material for hi...
Silicon, one of the most promising candidates to replace graphite anodes in lithium-ion batteries (L...
Nanostructuring has been shown to be fruitful in addressing the problems of high-capacity Si anodes....
Managing interfacial instability is crucial for enhancing cyclability in lithium-ion batteries (LIBs...
The application of lithium-ion (Li-ion) secondary batteries in electrical and hybrid electrical cars...
The demand for high performance lithium-ion batteries (LIBs) is increasing due to widespread use of ...
The emerging ubiquitous flexible/wearable electronics are in high demand for compatible flexible/hig...
We present a detailed study on graphene-coated aluminum thin films for Li-ion battery anode applicat...
The demand for high performance Lithium-ion batteries (LIBs) is increasing due to widespread use of ...
Inspired by the natural corn structure, a Si@hollow graphene shell@graphene (Si@GS@G) anode material...
In spite of the fact that there are plenty of recent studies on Si/graphene composite anodes, the in...
Incorporating silicon (Si) in anodes has shown great promise for the development of high capacity Li...
A silicon-graphene heterostructure provides optimal electrochemical performance as anode nanomateria...
Silicon nanoparticles have been successfully inserted into graphene sheets via a novel method combin...
Graphene Nanoscrolls with Confined Silicon Nanoparticles as a Durable Anode for Lithium-Ion Batterie
Silicon-based composites have received significant interest as a high-capacity anode material for hi...
Silicon, one of the most promising candidates to replace graphite anodes in lithium-ion batteries (L...
Nanostructuring has been shown to be fruitful in addressing the problems of high-capacity Si anodes....
Managing interfacial instability is crucial for enhancing cyclability in lithium-ion batteries (LIBs...
The application of lithium-ion (Li-ion) secondary batteries in electrical and hybrid electrical cars...
The demand for high performance lithium-ion batteries (LIBs) is increasing due to widespread use of ...
The emerging ubiquitous flexible/wearable electronics are in high demand for compatible flexible/hig...
We present a detailed study on graphene-coated aluminum thin films for Li-ion battery anode applicat...
The demand for high performance Lithium-ion batteries (LIBs) is increasing due to widespread use of ...
Inspired by the natural corn structure, a Si@hollow graphene shell@graphene (Si@GS@G) anode material...