The state-of-the-art graphite anode containing a small portion of silicon represents a promising way of applying high-capacity alloy anode in the next generation high energy density lithium-ion batteries. The conductive polymeric binders developed for Si anodes proved to be an effective binder for this graphite/nanoSi composite electrode. Without any acetylene black conductive additives in the electrode, a high areal capacity of above 2.5 mAh/cm2 is achieved during long-term cycling over 100 cycles. This conductive polymer-enabled graphite/nanoSi composite electrode exhibits high specific capacity and high 1st cycle efficiency, which is a significant progress toward commercial application of Si anodes
Silicon as the potential anode material for lithium-ion batteries suffers from huge volume change (u...
To increase the specific capacity of anodes for lithium-ion cells, advanced active materials, such a...
International audienceHerein we report the successful use of a polyisoindigo derivative (P(iso)) as ...
Multifunctional conductive binders represent an emerging class of polymer materials to address inher...
Multifunctional conductive binders represent an emerging class of polymer materials to address inher...
A new silicon alloy material composed of silicon nanoparticles embedded in Al-Fe-Ti-Ni matrix phases...
A novel polymer is designed to serve as the conductive binder for high-capacity silicon anodes in li...
In this study, silicon-graphite composites were prepared and investigated as anode materials for Li-...
Next-generation anode materials for Li-ion batteries such as silicon can lead to ten\u2005times more...
Flexible butyl interconnection segments are synthetically incorporated into an electronically conduc...
High-tap-density silicon nanomaterials are highly desirable as anodes for lithium ion batteries, due...
High-tap-density silicon nanomaterials are highly desirable as anodes for lithium ion batteries, due...
Flexible butyl interconnection segments are synthetically incorporated into an electronically conduc...
Flexible butyl interconnection segments are synthetically incorporated into an electronically conduc...
Silicon alloys have the highest specific capacity when used as anode material for lithium-ion batter...
Silicon as the potential anode material for lithium-ion batteries suffers from huge volume change (u...
To increase the specific capacity of anodes for lithium-ion cells, advanced active materials, such a...
International audienceHerein we report the successful use of a polyisoindigo derivative (P(iso)) as ...
Multifunctional conductive binders represent an emerging class of polymer materials to address inher...
Multifunctional conductive binders represent an emerging class of polymer materials to address inher...
A new silicon alloy material composed of silicon nanoparticles embedded in Al-Fe-Ti-Ni matrix phases...
A novel polymer is designed to serve as the conductive binder for high-capacity silicon anodes in li...
In this study, silicon-graphite composites were prepared and investigated as anode materials for Li-...
Next-generation anode materials for Li-ion batteries such as silicon can lead to ten\u2005times more...
Flexible butyl interconnection segments are synthetically incorporated into an electronically conduc...
High-tap-density silicon nanomaterials are highly desirable as anodes for lithium ion batteries, due...
High-tap-density silicon nanomaterials are highly desirable as anodes for lithium ion batteries, due...
Flexible butyl interconnection segments are synthetically incorporated into an electronically conduc...
Flexible butyl interconnection segments are synthetically incorporated into an electronically conduc...
Silicon alloys have the highest specific capacity when used as anode material for lithium-ion batter...
Silicon as the potential anode material for lithium-ion batteries suffers from huge volume change (u...
To increase the specific capacity of anodes for lithium-ion cells, advanced active materials, such a...
International audienceHerein we report the successful use of a polyisoindigo derivative (P(iso)) as ...