A unique hierarchical three dimensional (3D) flexible current collector, in which the vertically aligned carbon nanotube (VACNT) array grown directly on carbon cloth (CC), has been developed for flexible lithium ion batteries (LIBs). This novel architecture offers a high surface area, high electronic conductivity and robust structural stability for electrochemical active materials loading. When combined with high capacity Si, the vertically aligned carbon nanotube-Si/carbon cloth electrode exhibits high areal capacity together with excellent Li storage performance. Specifically, the electrode could deliver a high reversible areal capacity up to 3.33 mAh/cm2 (the corresponding specific capacity contribution from Si is as high as 2266 mAh/g) ...
As a concept for electrode architecture in high power lithium ion batteries, self-supported nanoarra...
New three-dimensional (3D) porous electrode concepts are required to overcome limitations in Li-ion ...
New three-dimensional (3D) porous electrode concepts are required to overcome limitations in Li-ion ...
International audienceThe concept of a hybrid nanostructured collector made of thin vertically align...
International audienceThe concept of a hybrid nanostructured collector made of thin vertically align...
International audienceThe concept of a hybrid nanostructured collector made of thin vertically align...
International audienceThe concept of a hybrid nanostructured collector made of thin vertically align...
International audienceThe concept of a hybrid nanostructured collector made of thin vertically align...
International audienceThe concept of a hybrid nanostructured collector made of thin vertically align...
International audienceThe concept of a hybrid nanostructured collector made of thin vertically align...
As a concept for electrode architecture in high power lithium ion batteries, self-supported nanoarra...
A prototype 3-dimensional (3D) anode, based on multiwall carbon nanotubes (MWCNTs), for Li-ion batte...
Carbon nanotubes, in different forms and architectures, have demonstrated good promise as electrode ...
As a concept for electrode architecture in high power lithium ion batteries, self-supported nanoarra...
Carbon nanotubes, in different forms and architectures, have demonstrated good promise as electrode ...
As a concept for electrode architecture in high power lithium ion batteries, self-supported nanoarra...
New three-dimensional (3D) porous electrode concepts are required to overcome limitations in Li-ion ...
New three-dimensional (3D) porous electrode concepts are required to overcome limitations in Li-ion ...
International audienceThe concept of a hybrid nanostructured collector made of thin vertically align...
International audienceThe concept of a hybrid nanostructured collector made of thin vertically align...
International audienceThe concept of a hybrid nanostructured collector made of thin vertically align...
International audienceThe concept of a hybrid nanostructured collector made of thin vertically align...
International audienceThe concept of a hybrid nanostructured collector made of thin vertically align...
International audienceThe concept of a hybrid nanostructured collector made of thin vertically align...
International audienceThe concept of a hybrid nanostructured collector made of thin vertically align...
As a concept for electrode architecture in high power lithium ion batteries, self-supported nanoarra...
A prototype 3-dimensional (3D) anode, based on multiwall carbon nanotubes (MWCNTs), for Li-ion batte...
Carbon nanotubes, in different forms and architectures, have demonstrated good promise as electrode ...
As a concept for electrode architecture in high power lithium ion batteries, self-supported nanoarra...
Carbon nanotubes, in different forms and architectures, have demonstrated good promise as electrode ...
As a concept for electrode architecture in high power lithium ion batteries, self-supported nanoarra...
New three-dimensional (3D) porous electrode concepts are required to overcome limitations in Li-ion ...
New three-dimensional (3D) porous electrode concepts are required to overcome limitations in Li-ion ...