Polymeric binders play an important role in electrochemical performance of high-capacity silicon (Si) anodes that usually suffer from severe capacity fading due to unparalleled volume change of Si during cycling. In an effort to find efficient polymeric binders that could mitigate such capacity fading, herein, we introduce polymerized β-cyclodextrin (β-CDp) binder for Si nanoparticle anodes. Unlike one-dimensional binders, hyperbranched network structure of β-CDp presents multidimensional hydrogen-bonding interactions with Si particles and therefore offers robust contacts between both components. Even the Si nanoparticles that lost the original contacts with the binder during cycling recover within the multidimensional binder network, thus ...
Silicon as an anode material in lithium-ion batteries has great potentials due to its high charge ca...
Traditional binders generally interact with silicon particles via weak van der Waals forces and cons...
Self-healing supramolecular binder was previously found to enhance the cycling stability of micron-s...
Polymeric binders play an important role in electrochemical performance of high-capacity silicon (Si...
Silicon is considered as one of the ideal anode materials for the new generation of lithium-ion batt...
Rechargeable Li-ion batteries with larger autonomy are needed to meet increasing market demands, hen...
Si anodes suffer an inherent volume expansion problem. The consensus is that hydrogen bonds in these...
Si anodes suffer an inherent volume expansion problem. The consensus is that hydrogen bonds in these...
Si anodes suffer an inherent volume expansion problem. The consensus is that hydrogen bonds in these...
A novel polymer is designed to serve as the conductive binder for high-capacity silicon anodes in li...
Silicon (Si) anode is among the most promising candidates for the next-generation high-capacity elec...
Silicon is greatly promising for high-capacity anode materials in lithium-ion batteries (LIBs) due t...
We report supramolecular cross-linking of polymer binders via dynamic host-guest interactions betwee...
Silicon-based anodes with high theoretical capacity have intriguing potential applications for high ...
We report supramolecular cross-linking of polymer binders via dynamic host-guest interactions betwee...
Silicon as an anode material in lithium-ion batteries has great potentials due to its high charge ca...
Traditional binders generally interact with silicon particles via weak van der Waals forces and cons...
Self-healing supramolecular binder was previously found to enhance the cycling stability of micron-s...
Polymeric binders play an important role in electrochemical performance of high-capacity silicon (Si...
Silicon is considered as one of the ideal anode materials for the new generation of lithium-ion batt...
Rechargeable Li-ion batteries with larger autonomy are needed to meet increasing market demands, hen...
Si anodes suffer an inherent volume expansion problem. The consensus is that hydrogen bonds in these...
Si anodes suffer an inherent volume expansion problem. The consensus is that hydrogen bonds in these...
Si anodes suffer an inherent volume expansion problem. The consensus is that hydrogen bonds in these...
A novel polymer is designed to serve as the conductive binder for high-capacity silicon anodes in li...
Silicon (Si) anode is among the most promising candidates for the next-generation high-capacity elec...
Silicon is greatly promising for high-capacity anode materials in lithium-ion batteries (LIBs) due t...
We report supramolecular cross-linking of polymer binders via dynamic host-guest interactions betwee...
Silicon-based anodes with high theoretical capacity have intriguing potential applications for high ...
We report supramolecular cross-linking of polymer binders via dynamic host-guest interactions betwee...
Silicon as an anode material in lithium-ion batteries has great potentials due to its high charge ca...
Traditional binders generally interact with silicon particles via weak van der Waals forces and cons...
Self-healing supramolecular binder was previously found to enhance the cycling stability of micron-s...