Silicon anode materials have been developed to achieve high capacity lithium ion batteries for operating smart phones and driving electric vehicles for longer time. Serious volume expansion induced by lithiation, which is the main drawback of silicon, has been challenged by multi-faceted approaches. Mechanically rigid and stiff polymers (e.g. alginate and carboxymethyl cellulose) were considered as the good choices of binders for silicon because they grab silicon particles in a tight and rigid way so that pulverization and then break-away of the active mass from electric pathways are suppressed. Contrary to the public wisdom, in this work, we demonstrate that electrochemical performances are secured better by letting silicon electrodes brea...
Silicon (Si) anode is among the most promising candidates for the next-generation high-capacity elec...
The aggravated environmental issues and limited resources call for renewable substitutions for fossi...
Lithium-ion batteries with ever-increasing energy densities are needed for batteries for advanced de...
Silicon anode materials have been developed to achieve high capacity lithium ion batteries for opera...
Silicon anodes are promising for high energy density lithium-ion batteries because of their high the...
Silicon (Si) anode is among the most promising candidates for the next-generation high-capacity ele...
Advanced polymeric binders with unique functions such as improvements in the electronic conduction n...
Silicon (Si) has been counted as the most promising anode material for next-generation lithium-ion b...
Silicon, while suffering from major degradation issues, has been recognized as a next promising mate...
Si has attracted enormous research and manufacturing attention as an anode material for lithium ion ...
To determine the effect of cross-linking in polymer binders on gravimetric capacity and retention in...
Silicon is a potential high-capacity anode material for lithium-ion batteries. However, the large vo...
Silicon has emerged as the next‐generation anode material for high‐capacity lithium‐ion batteries (L...
Silicon, a promising high-capacity anode material of lithium ion batteries, suffers from its volume ...
Silicon, a promising high-capacity anode material of lithium ion batteries, suffers from its volume ...
Silicon (Si) anode is among the most promising candidates for the next-generation high-capacity elec...
The aggravated environmental issues and limited resources call for renewable substitutions for fossi...
Lithium-ion batteries with ever-increasing energy densities are needed for batteries for advanced de...
Silicon anode materials have been developed to achieve high capacity lithium ion batteries for opera...
Silicon anodes are promising for high energy density lithium-ion batteries because of their high the...
Silicon (Si) anode is among the most promising candidates for the next-generation high-capacity ele...
Advanced polymeric binders with unique functions such as improvements in the electronic conduction n...
Silicon (Si) has been counted as the most promising anode material for next-generation lithium-ion b...
Silicon, while suffering from major degradation issues, has been recognized as a next promising mate...
Si has attracted enormous research and manufacturing attention as an anode material for lithium ion ...
To determine the effect of cross-linking in polymer binders on gravimetric capacity and retention in...
Silicon is a potential high-capacity anode material for lithium-ion batteries. However, the large vo...
Silicon has emerged as the next‐generation anode material for high‐capacity lithium‐ion batteries (L...
Silicon, a promising high-capacity anode material of lithium ion batteries, suffers from its volume ...
Silicon, a promising high-capacity anode material of lithium ion batteries, suffers from its volume ...
Silicon (Si) anode is among the most promising candidates for the next-generation high-capacity elec...
The aggravated environmental issues and limited resources call for renewable substitutions for fossi...
Lithium-ion batteries with ever-increasing energy densities are needed for batteries for advanced de...