To improve the inevitable capacity fading issues faced by traditional submicron Si@C electrodes used as anode materials in LIBs, a flexible and conductive connection design is proposed and realized by a solid-state growth approach. In this construction, Si@C is entangled into in situ synthesized carbon nanotube-based network to form a highly connective Si@C/CNTs composite. The interwoven carbon-nanotubes having tight linkages with Si@C contribute to ensure the charge transfer pathway within Si@C particles and accommodate the volume expansion during cycling. The Co/N co-doping further facilitates the transportation of Li ions. As expected, the Si@C/CNT electrode shows improved conductivity and long-term cyclic stability with a high-capacity ...
We demonstrate a new kind of Si-based anode architectures consisting of silicon nanowire/overlapped ...
As an effort to address the chronic capacity fading of Si anodes and thus achieve their robust cycli...
Despite the advantageous characteristics of a carbon nanotube (CNT), commercially reliable Si-CNT na...
Conductive agent incorporating Si anodes consisting of directly grown carbon nanotubes on hard carbo...
An easy and scalable synthetic route was proposed for synthesis of a high-energy stable anode materi...
The demand for high-capacity lithium-ion batteries (LIBs) is ever-increasing. Thus, research has bee...
Silicon is a promising anode material that can increase the theoretical capacity of lithium-ion batt...
Silicon is an attractive alloy-type anode material because of its highest known capacity (4200 mAh/g...
Thin and lightweight flexible lithium-ion batteries (LIBs) with high volumetric capacities are cruci...
The application of lithium-ion (Li-ion) secondary batteries in electrical and hybrid electrical cars...
Novel silicon@ carbon/carbon nanotubes&carbon nanofibres (Si@C/CNTs&CNFs) composites have been succe...
In this technological advanced age, electronic gadgets have become necessities and its services have...
A 3D structured composite was designed to improve the conductivity and to ease the volume problems o...
International audienceIn the context of high demand for energy in mobile devices, many studies deal ...
A core/shell type silicon/carbon nanotubes (Si/CNTs) composite is prepared and its anodic performanc...
We demonstrate a new kind of Si-based anode architectures consisting of silicon nanowire/overlapped ...
As an effort to address the chronic capacity fading of Si anodes and thus achieve their robust cycli...
Despite the advantageous characteristics of a carbon nanotube (CNT), commercially reliable Si-CNT na...
Conductive agent incorporating Si anodes consisting of directly grown carbon nanotubes on hard carbo...
An easy and scalable synthetic route was proposed for synthesis of a high-energy stable anode materi...
The demand for high-capacity lithium-ion batteries (LIBs) is ever-increasing. Thus, research has bee...
Silicon is a promising anode material that can increase the theoretical capacity of lithium-ion batt...
Silicon is an attractive alloy-type anode material because of its highest known capacity (4200 mAh/g...
Thin and lightweight flexible lithium-ion batteries (LIBs) with high volumetric capacities are cruci...
The application of lithium-ion (Li-ion) secondary batteries in electrical and hybrid electrical cars...
Novel silicon@ carbon/carbon nanotubes&carbon nanofibres (Si@C/CNTs&CNFs) composites have been succe...
In this technological advanced age, electronic gadgets have become necessities and its services have...
A 3D structured composite was designed to improve the conductivity and to ease the volume problems o...
International audienceIn the context of high demand for energy in mobile devices, many studies deal ...
A core/shell type silicon/carbon nanotubes (Si/CNTs) composite is prepared and its anodic performanc...
We demonstrate a new kind of Si-based anode architectures consisting of silicon nanowire/overlapped ...
As an effort to address the chronic capacity fading of Si anodes and thus achieve their robust cycli...
Despite the advantageous characteristics of a carbon nanotube (CNT), commercially reliable Si-CNT na...