The development of silicon-based anodes with high capacity and good cycling stability for next-generation lithium-ion batteries is a very challenging task due to the large volume changes in the electrodes during repeated cycling, which results in capacity fading. In this work, we synthesized silicon alloy as an active anode material, which was composed of silicon nanoparticles embedded in Cu-Al-Fe matrix phases. Poly(amide imide)s, (PAI)s, with different thermal treatments were used as polymer binders in the silicon alloy based electrodes. A systematic study demonstrated that the thermal treatment of the silicon alloy electrodes at high temperature made the electrodes mechanically strong and remarkably enhanced the cycling stability compare...
Herein, we improved the performance of Si/graphite (Si/C) composite anodes by introducing a highly a...
Binders play a crucial role in maintaining mechanical integrity of electrodes in lithium-ion batteri...
A novel polymer binder, synthesized via in situ thermal cross-linking of water-soluble polyvinyl alc...
A new silicon alloy material composed of silicon nanoparticles embedded in Al-Fe-Ti-Ni matrix phases...
Silicon is widely regarded as one of the most promising anode materials for lithium ion and next-gen...
The cycling performance in Li half cells of Si alloy electrodes with polyvinylidene fluoride or poly...
Rechargeable lithium-ion batteries have received a lot of attention in various applications such as ...
A novel polymer is designed to serve as the conductive binder for high-capacity silicon anodes in li...
Polyamide imide (PAI), one of the classes of copolyimides containing both high mechanical properties...
Silicon, a promising high-capacity anode material of lithium ion batteries, suffers from its volume ...
Silicon is a strong anode material alternative to graphite in terms of its high energy and power cap...
Silicon, a promising high-capacity anode material of lithium ion batteries, suffers from its volume ...
To increase the specific capacity of anodes for lithium-ion cells, advanced active materials, such a...
Silicon anodes are promising for high energy density lithium-ion batteries because of their high the...
Silicon (Si) has been counted as the most promising anode material for next-generation lithium-ion b...
Herein, we improved the performance of Si/graphite (Si/C) composite anodes by introducing a highly a...
Binders play a crucial role in maintaining mechanical integrity of electrodes in lithium-ion batteri...
A novel polymer binder, synthesized via in situ thermal cross-linking of water-soluble polyvinyl alc...
A new silicon alloy material composed of silicon nanoparticles embedded in Al-Fe-Ti-Ni matrix phases...
Silicon is widely regarded as one of the most promising anode materials for lithium ion and next-gen...
The cycling performance in Li half cells of Si alloy electrodes with polyvinylidene fluoride or poly...
Rechargeable lithium-ion batteries have received a lot of attention in various applications such as ...
A novel polymer is designed to serve as the conductive binder for high-capacity silicon anodes in li...
Polyamide imide (PAI), one of the classes of copolyimides containing both high mechanical properties...
Silicon, a promising high-capacity anode material of lithium ion batteries, suffers from its volume ...
Silicon is a strong anode material alternative to graphite in terms of its high energy and power cap...
Silicon, a promising high-capacity anode material of lithium ion batteries, suffers from its volume ...
To increase the specific capacity of anodes for lithium-ion cells, advanced active materials, such a...
Silicon anodes are promising for high energy density lithium-ion batteries because of their high the...
Silicon (Si) has been counted as the most promising anode material for next-generation lithium-ion b...
Herein, we improved the performance of Si/graphite (Si/C) composite anodes by introducing a highly a...
Binders play a crucial role in maintaining mechanical integrity of electrodes in lithium-ion batteri...
A novel polymer binder, synthesized via in situ thermal cross-linking of water-soluble polyvinyl alc...