An easy and scalable synthetic route was proposed for synthesis of a high-energy stable anode material composed of carbon-coated Si nanoparticles (NPs, 80 nm) confined in a three-dimensional (3D) network-structured conductive carbon nanotube (CNT) matrix (Si/CNT@C). The Si/CNT@C composite was fabricated via in situ polymerization of resorcinol formaldehyde (RF) resin in the co-existence of Si NPs and CNTs, followed by carbonization at 700 °C. The RF resin-derived carbon shell (~10 nm) was wrapped on the Si NPs and CNTs surface, welding the Si NPs to the sidewall of the interconnected CNTs matrix to avoid Si NP agglomeration. The unique 3D architecture provides a highway for Li+ ion diffusion and electron transportation to allow the fast lit...
The three-dimensional (3-D) nano-architectures have attracted tremendous attention for applications ...
International audienceThe concept of a hybrid nanostructured collector made of thin vertically align...
Silicon/carbon composite materials were widely considered as the next generation and the most potent...
An easy and scalable synthetic route was proposed for synthesis of a high-energy stable anode materi...
Silicon is considered one of the most promising anode materials for high-performance Li-ion batterie...
Conductive agent incorporating Si anodes consisting of directly grown carbon nanotubes on hard carbo...
The increasing concern about global energy crisis and continuing deteriorating environmental issues ...
Novel silicon@ carbon/carbon nanotubes&carbon nanofibres (Si@C/CNTs&CNFs) composites have been succe...
In the context of high demand for energy in mobile devices, many studies deal with the lithium-ion c...
To improve the inevitable capacity fading issues faced by traditional submicron Si@C electrodes used...
Si is a promising anode candidate of lithium ion batteries with exceptionally high theoretical capac...
The application of lithium-ion (Li-ion) secondary batteries in electrical and hybrid electrical cars...
As an effort to address the chronic capacity fading of Si anodes and thus achieve their robust cycli...
Silicon has the highest theoretical lithium storage capacity of all materials at 4200 mAh/g; therefo...
In spite of silicon has a superior theoretical capacity, the large volume expansion of Si anodes dur...
The three-dimensional (3-D) nano-architectures have attracted tremendous attention for applications ...
International audienceThe concept of a hybrid nanostructured collector made of thin vertically align...
Silicon/carbon composite materials were widely considered as the next generation and the most potent...
An easy and scalable synthetic route was proposed for synthesis of a high-energy stable anode materi...
Silicon is considered one of the most promising anode materials for high-performance Li-ion batterie...
Conductive agent incorporating Si anodes consisting of directly grown carbon nanotubes on hard carbo...
The increasing concern about global energy crisis and continuing deteriorating environmental issues ...
Novel silicon@ carbon/carbon nanotubes&carbon nanofibres (Si@C/CNTs&CNFs) composites have been succe...
In the context of high demand for energy in mobile devices, many studies deal with the lithium-ion c...
To improve the inevitable capacity fading issues faced by traditional submicron Si@C electrodes used...
Si is a promising anode candidate of lithium ion batteries with exceptionally high theoretical capac...
The application of lithium-ion (Li-ion) secondary batteries in electrical and hybrid electrical cars...
As an effort to address the chronic capacity fading of Si anodes and thus achieve their robust cycli...
Silicon has the highest theoretical lithium storage capacity of all materials at 4200 mAh/g; therefo...
In spite of silicon has a superior theoretical capacity, the large volume expansion of Si anodes dur...
The three-dimensional (3-D) nano-architectures have attracted tremendous attention for applications ...
International audienceThe concept of a hybrid nanostructured collector made of thin vertically align...
Silicon/carbon composite materials were widely considered as the next generation and the most potent...