A novel polymer is designed to serve as the conductive binder for high-capacity silicon anodes in lithium ion batteries (LIBs), aiming to address fast capacity fade and poor cycle life of silicon anodes caused by large volume change during repeated cycles. Abundant carboxyl groups in the polymer chain can effectively enhance the binding force to Si nanoparticles (NPs) and the n-type polyfluorene backbones of the polymer significantly promote the electronic conductivity under the reducing environment for anodes, dual-features of which can maintain electronic integrity during lithiation/delithiation cycles. Notably, the polymer can react with the polar groups on the surface of Si NPs to form strong chemical bonds, thus truly maintaining the e...
Multifunctional conductive binders represent an emerging class of polymer materials to address inher...
Both industrious and academic research societies have considered silicon (Si) as the most promising ...
The dilemma of employing high-capacity battery materials and maintaining the electronic and mechanic...
Silicon-based anodes with high theoretical capacity have intriguing potential applications for high ...
Advanced polymeric binders with unique functions such as improvements in the electronic conduction n...
This work demonstrates the design, synthesis, characterization, and study of the electrochemical per...
Next-generation anode materials for Li-ion batteries such as silicon can lead to ten\u2005times more...
Silicon (Si) anode is among the most promising candidates for the next-generation high-capacity elec...
Silicon (Si) has been counted as the most promising anode material for next-generation lithium-ion b...
High-tap-density silicon nanomaterials are highly desirable as anodes for lithium ion batteries, due...
Silicon as an anode material in lithium-ion batteries has great potentials due to its high charge ca...
A novel polymer binder, synthesized via in situ thermal cross-linking of water-soluble polyvinyl alc...
The state-of-the-art graphite anode containing a small portion of silicon represents a promising way...
The electrochemical performance of Li-ion batteries (LIBs) can be highly tuned by various factors in...
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...
Both industrious and academic research societies have considered silicon (Si) as the most promising ...
The dilemma of employing high-capacity battery materials and maintaining the electronic and mechanic...
Silicon-based anodes with high theoretical capacity have intriguing potential applications for high ...
Advanced polymeric binders with unique functions such as improvements in the electronic conduction n...
This work demonstrates the design, synthesis, characterization, and study of the electrochemical per...
Next-generation anode materials for Li-ion batteries such as silicon can lead to ten\u2005times more...
Silicon (Si) anode is among the most promising candidates for the next-generation high-capacity elec...
Silicon (Si) has been counted as the most promising anode material for next-generation lithium-ion b...
High-tap-density silicon nanomaterials are highly desirable as anodes for lithium ion batteries, due...
Silicon as an anode material in lithium-ion batteries has great potentials due to its high charge ca...
A novel polymer binder, synthesized via in situ thermal cross-linking of water-soluble polyvinyl alc...
The state-of-the-art graphite anode containing a small portion of silicon represents a promising way...
The electrochemical performance of Li-ion batteries (LIBs) can be highly tuned by various factors in...
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...
Both industrious and academic research societies have considered silicon (Si) as the most promising ...
The dilemma of employing high-capacity battery materials and maintaining the electronic and mechanic...