The large capacity loss and huge volume change of silicon anodes severely restricts their practical applications in lithium ion batteries. In this contribution, the sandwich nanoarchitecture of rolled-up Si/reduced graphene oxide bilayer nanomembranes was designed <i>via</i> a strain released strategy. Within this nanoarchitecture, the inner void space and the mechanical feature of nanomembranes can help to buffer the strain during lithiation/delithiation; the alternately stacked conductive rGO layers can protect the Si layers from excessive formation of SEI layers. As anodes for lithium-ion batteries, the sandwiched Si/rGO nanoarchitecture demonstrates long cycling life of 2000 cycles at 3 A g<sup>–1</sup> with a capacity degradation of on...
Abstract(#br)A freestanding porous three-dimensional (3D) network composed of graphene/silicon/graph...
Silicon is a promising anode material in high energy density application of lithium ion batteries be...
The emerging ubiquitous flexible/wearable electronics are in high demand for compatible flexible/hig...
Lithium ion batteries (LIBs) have attracted considerable interest due to their wide range of applica...
A novel two-dimensional porous sandwich-like Si/carbon nanosheet is designed and successfully fabric...
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...
Managing interfacial instability is crucial for enhancing cyclability in lithium-ion batteries (LIBs...
Stability and high energy densities are essential qualities for emerging battery electrodes. Because...
Silicon (Si) shows promise as an anode material in lithium-ion batteries due to its very high specif...
Silicon has been touted as one of the most promising anode materials for next generation lithium ion...
A Si/C composite with Si nanoparticles (nSi) uniformly dispersed in the interlayers of reduced graph...
Silicon (Si) is a promising anode material for next-generation Li-ion batteries. The nanometer-sized...
Silicon has been touted as one of the most promising anode materials for next generation lithium ion...
Despite the significant research that has been carried out to improve cycling performance of lithium...
Abstract(#br)A freestanding porous three-dimensional (3D) network composed of graphene/silicon/graph...
Silicon is a promising anode material in high energy density application of lithium ion batteries be...
The emerging ubiquitous flexible/wearable electronics are in high demand for compatible flexible/hig...
Lithium ion batteries (LIBs) have attracted considerable interest due to their wide range of applica...
A novel two-dimensional porous sandwich-like Si/carbon nanosheet is designed and successfully fabric...
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...
Managing interfacial instability is crucial for enhancing cyclability in lithium-ion batteries (LIBs...
Stability and high energy densities are essential qualities for emerging battery electrodes. Because...
Silicon (Si) shows promise as an anode material in lithium-ion batteries due to its very high specif...
Silicon has been touted as one of the most promising anode materials for next generation lithium ion...
A Si/C composite with Si nanoparticles (nSi) uniformly dispersed in the interlayers of reduced graph...
Silicon (Si) is a promising anode material for next-generation Li-ion batteries. The nanometer-sized...
Silicon has been touted as one of the most promising anode materials for next generation lithium ion...
Despite the significant research that has been carried out to improve cycling performance of lithium...
Abstract(#br)A freestanding porous three-dimensional (3D) network composed of graphene/silicon/graph...
Silicon is a promising anode material in high energy density application of lithium ion batteries be...
The emerging ubiquitous flexible/wearable electronics are in high demand for compatible flexible/hig...