Abstract(#br)Micrometer-sized silicon powders, due to its high specific capacity, easy accessibility, and low cost, have been regarded as an attractive anode material for lithium-ion batteries. The severer mechanical instability and high inter-particle resistance during cycling, however, hinder its further application. In this work, a novel potholed micrometer-sized silicon powders (PMSi)/carbon nanotubes (CNT)/C electrode is proposed. The resulting three-dimensional (3D) conductive framework and multi-point contact network exhibit ideal structural stability and high-rate cycling property. Hence, the volume resistivity of PMSi/CNT/C (157 Ω m) is reduced significantly relative to traditional PMSi/commercial carbon nanotubes (CCT)/C composite...
In this technological advanced age, electronic gadgets have become necessities and its services have...
Due to its excellent capacity, around 4000 mA h g(-1), silicon has been recognized as one of the mos...
Silicon is well known as a very promising anode material because it has an extremely high theoretica...
As an effort to address the chronic capacity fading of Si anodes and thus achieve their robust cycli...
Silicon-based materials present high theoretical capacities (4200 mAh/g), making them among the most...
International audienceThe concept of a hybrid nanostructured collector made of thin vertically align...
The application of lithium-ion (Li-ion) secondary batteries in electrical and hybrid electrical cars...
Silicon-based materials have attracted significant research as an outstanding candidate anode for li...
A novel Si-MWNT nanocomposite synthesized via a CVD process shows a high reversible capacity of over...
Silicon/carbon composite materials were widely considered as the next generation and the most potent...
The demand for high-capacity lithium-ion batteries (LIBs) is ever-increasing. Thus, research has bee...
Silicon (Si)-based anodes have emerged as a highly promising material for the next generation of lit...
Despite the advantageous characteristics of a carbon nanotube (CNT), commercially reliable Si-CNT na...
International audienceSilicon is one of the most promising anode materials for Lithium-ion batteries...
We report on the formation of composite silicon-based multiphase nanopowders as promising active-ano...
In this technological advanced age, electronic gadgets have become necessities and its services have...
Due to its excellent capacity, around 4000 mA h g(-1), silicon has been recognized as one of the mos...
Silicon is well known as a very promising anode material because it has an extremely high theoretica...
As an effort to address the chronic capacity fading of Si anodes and thus achieve their robust cycli...
Silicon-based materials present high theoretical capacities (4200 mAh/g), making them among the most...
International audienceThe concept of a hybrid nanostructured collector made of thin vertically align...
The application of lithium-ion (Li-ion) secondary batteries in electrical and hybrid electrical cars...
Silicon-based materials have attracted significant research as an outstanding candidate anode for li...
A novel Si-MWNT nanocomposite synthesized via a CVD process shows a high reversible capacity of over...
Silicon/carbon composite materials were widely considered as the next generation and the most potent...
The demand for high-capacity lithium-ion batteries (LIBs) is ever-increasing. Thus, research has bee...
Silicon (Si)-based anodes have emerged as a highly promising material for the next generation of lit...
Despite the advantageous characteristics of a carbon nanotube (CNT), commercially reliable Si-CNT na...
International audienceSilicon is one of the most promising anode materials for Lithium-ion batteries...
We report on the formation of composite silicon-based multiphase nanopowders as promising active-ano...
In this technological advanced age, electronic gadgets have become necessities and its services have...
Due to its excellent capacity, around 4000 mA h g(-1), silicon has been recognized as one of the mos...
Silicon is well known as a very promising anode material because it has an extremely high theoretica...