Binder-free graphene-supported Ge nanowires, Si nanowires, and Si nanocrystals were studied for use as negative electrode materials in rechargeable lithium ion batteries (LIBs). Graphene obtained from reduced graphene oxide (RGO) helped stabilize electrochemical cycling of all of the nanomaterials. However, differential capacity plots revealed competition between RGO and Si/Ge lithiation. At high Si/Ge loading (>50% w/w) and low cycle rates (C/10), RGO lithiation begins to dominate. Under those conditions, only Ge nanowires exhibited significant lithiation relative to RGO, most likely due to the inherently faster lithiation of Ge compared to Si
We report a facile method to prepare nanoarchitectured metal oxides/graphene hybrids as both positiv...
A facile and scalable method is reported to fabricate Si-graphene nanocomposite as anode material fo...
In this paper, the preparation and chemical–physical characterization of a composite material made o...
Energy production and storage have become key issues due to the ever increasing demand of electricit...
Reduced graphene oxide (rGO) is used as a conductive additive for nanosilicon-based lithium battery ...
International audienceReduced graphene oxide (rGO) is used as a conductive additive for nanosilicon-...
Alloying anode materials (Si, Ge, Sn etc.) in lithium-ion batteries usually suffer from a remarkable...
bS Supporting Information Development of advanced lithium ion batteries (LIBs) re-quires new electro...
Graphene in the form of graphene/nanocrystal nanocomposites can improve the electrochemical performa...
For the application to portable devices and storage of renewable energies, high-performance lithium-...
Energy production and storage have become key issues due to the ever-increasing demand of electricit...
Si nanowires in graphene papers were successfully prepared by supercritical fluid–liquid–solid (SFLS...
The recent widespread of electric (EVs) and hybrid vehicles (HEVs), with the final goal of reducing ...
We demonstrate the feasibility of a lithium ion battery (LIB) using graphene nanosheets (GNS) as the...
For the first time, we report that graphene oxide (GO) can be used as a new “dual-role” binder for S...
We report a facile method to prepare nanoarchitectured metal oxides/graphene hybrids as both positiv...
A facile and scalable method is reported to fabricate Si-graphene nanocomposite as anode material fo...
In this paper, the preparation and chemical–physical characterization of a composite material made o...
Energy production and storage have become key issues due to the ever increasing demand of electricit...
Reduced graphene oxide (rGO) is used as a conductive additive for nanosilicon-based lithium battery ...
International audienceReduced graphene oxide (rGO) is used as a conductive additive for nanosilicon-...
Alloying anode materials (Si, Ge, Sn etc.) in lithium-ion batteries usually suffer from a remarkable...
bS Supporting Information Development of advanced lithium ion batteries (LIBs) re-quires new electro...
Graphene in the form of graphene/nanocrystal nanocomposites can improve the electrochemical performa...
For the application to portable devices and storage of renewable energies, high-performance lithium-...
Energy production and storage have become key issues due to the ever-increasing demand of electricit...
Si nanowires in graphene papers were successfully prepared by supercritical fluid–liquid–solid (SFLS...
The recent widespread of electric (EVs) and hybrid vehicles (HEVs), with the final goal of reducing ...
We demonstrate the feasibility of a lithium ion battery (LIB) using graphene nanosheets (GNS) as the...
For the first time, we report that graphene oxide (GO) can be used as a new “dual-role” binder for S...
We report a facile method to prepare nanoarchitectured metal oxides/graphene hybrids as both positiv...
A facile and scalable method is reported to fabricate Si-graphene nanocomposite as anode material fo...
In this paper, the preparation and chemical–physical characterization of a composite material made o...