Silicon-based anodes are of particular interest for the application of next generation large-capacity lithium-ion batteries (LIBs) because of their natural abundance and ultrahigh theoretical lithium storage ability. However, the huge volume expansion and inferior cyclic stability severely limit their practical applications. To address this challenge, herein, hollow cubelike hybrid composites consisting of a Si/SiO2 cross-link covered by a carbon layer (Si/SiO2@C) have been rationally synthesized through a facile zeolitic imidazolate framework template method. Within hybrid composites, the porous Si/SiO2 cross-link with an internal void can effectively mitigate volume changes and facilitate fast channels for Li+ during the charge–discharge ...
We report direct manufacturing of high-capacity carbon/silicon composite fiber electrodes for lithiu...
Si-C composite with hollow spherical structure was synthesized using ultrasonic treatment of organos...
A novel synthetic procedure for the preparation of a SiOx-based nanocomposite, involving gelificatio...
It is urgent to develop novel anode materials with high energy density and facile synthetic procedur...
A sustainable synthesis procedure of a rational-designed silicon–carbon electrode for a high-perform...
We have successfully fabricated a hybrid silicon–carbon nanostructured composite with large area (ab...
Silica (SiO2) is regarded as one of the most promising anode materials for lithium-ion batteries due...
Silicon anode materials with ultrahigh theoretic capacity of 4200 mAh g–1 exhibit an attractive pros...
Controlling the morphology of nanostructured silicon is critical to improving the structural stabili...
Designing hollow/porous structure is regarded as an effective approach to address the dramatic volum...
A novel C/SiO2 composite with a carbon-silica-carbon (C-mcms) three layer structure was synthesized ...
Silicon batteries have attracted much attention in recent years due to their high theoretical capaci...
Vast volume expansion of Si-based materials severely deteriorates the electrochemical performance of...
Due to poor electrical conductivity and significant volume change during the lithiation/delithiation...
C/Si hybrid systems for Li-ion batteries have been studied for many years.[1] C properties (softness...
We report direct manufacturing of high-capacity carbon/silicon composite fiber electrodes for lithiu...
Si-C composite with hollow spherical structure was synthesized using ultrasonic treatment of organos...
A novel synthetic procedure for the preparation of a SiOx-based nanocomposite, involving gelificatio...
It is urgent to develop novel anode materials with high energy density and facile synthetic procedur...
A sustainable synthesis procedure of a rational-designed silicon–carbon electrode for a high-perform...
We have successfully fabricated a hybrid silicon–carbon nanostructured composite with large area (ab...
Silica (SiO2) is regarded as one of the most promising anode materials for lithium-ion batteries due...
Silicon anode materials with ultrahigh theoretic capacity of 4200 mAh g–1 exhibit an attractive pros...
Controlling the morphology of nanostructured silicon is critical to improving the structural stabili...
Designing hollow/porous structure is regarded as an effective approach to address the dramatic volum...
A novel C/SiO2 composite with a carbon-silica-carbon (C-mcms) three layer structure was synthesized ...
Silicon batteries have attracted much attention in recent years due to their high theoretical capaci...
Vast volume expansion of Si-based materials severely deteriorates the electrochemical performance of...
Due to poor electrical conductivity and significant volume change during the lithiation/delithiation...
C/Si hybrid systems for Li-ion batteries have been studied for many years.[1] C properties (softness...
We report direct manufacturing of high-capacity carbon/silicon composite fiber electrodes for lithiu...
Si-C composite with hollow spherical structure was synthesized using ultrasonic treatment of organos...
A novel synthetic procedure for the preparation of a SiOx-based nanocomposite, involving gelificatio...