Recent research has focused on making suitable anode materials for lithium-ion batteries and using nanotechnology to refine composite electrode materials with high reversible capacity and strong stability. However, much work remains to be done to develop these materials into commercially viable solutions. The anode materials must have high reversible capacity, a long lifetime, and the ability to accept and release lithium ions repeatedly. Nano-engineered composite anode materials based on silicon and iron have shown good promise but need improved electrochemical properties and longer effective lifetimes. This paper summarizes the performance characteristics of Si-based and Fe-based anodes and ways to improve their performance through nanoen...
In order to develop high capacity electrode materials with next generation Li-ion batteries, intensi...
Since the introduction of the first commercial lithium ion batteries (LIBs) by Sony in 1991, LIBs ha...
Silicon has demonstrated great potential as anode materials for next-generation high-energy density ...
Recent research has focused on making suitable anode materials for lithium-ion batteries and using n...
Nowadays, lithium-ion batteries (LIBs) are applied in many fields for their high energy density, low...
To increase the specific capacity of anodes for lithium-ion cells, advanced active materials, such a...
The radical change in the global economy demands lithium-ion batteries (LIBs) with improved energy d...
High capacity electrode materials are searched for commercial applications due to the increase in en...
2015-01-29Lithium-ion battery has generated great impacts on portable electronics since its first co...
Lithium-ion batteries have long been used in electronic products and electric vehicles, but their en...
Nano-engineering of silicon anodes has contributed to the demonstration of a promising potential for...
There are growing concerns over the environmental, climate, and health impacts caused by using non-r...
In this paper, a cost-effective strategy for fabricating silicon-carbon composites was designed to f...
Renewable energy resources such as solar energy and wind energy can be used in generating electric i...
Silicon is a promising anode material for Li-ion batteries in regarding of high capacity, low cost a...
In order to develop high capacity electrode materials with next generation Li-ion batteries, intensi...
Since the introduction of the first commercial lithium ion batteries (LIBs) by Sony in 1991, LIBs ha...
Silicon has demonstrated great potential as anode materials for next-generation high-energy density ...
Recent research has focused on making suitable anode materials for lithium-ion batteries and using n...
Nowadays, lithium-ion batteries (LIBs) are applied in many fields for their high energy density, low...
To increase the specific capacity of anodes for lithium-ion cells, advanced active materials, such a...
The radical change in the global economy demands lithium-ion batteries (LIBs) with improved energy d...
High capacity electrode materials are searched for commercial applications due to the increase in en...
2015-01-29Lithium-ion battery has generated great impacts on portable electronics since its first co...
Lithium-ion batteries have long been used in electronic products and electric vehicles, but their en...
Nano-engineering of silicon anodes has contributed to the demonstration of a promising potential for...
There are growing concerns over the environmental, climate, and health impacts caused by using non-r...
In this paper, a cost-effective strategy for fabricating silicon-carbon composites was designed to f...
Renewable energy resources such as solar energy and wind energy can be used in generating electric i...
Silicon is a promising anode material for Li-ion batteries in regarding of high capacity, low cost a...
In order to develop high capacity electrode materials with next generation Li-ion batteries, intensi...
Since the introduction of the first commercial lithium ion batteries (LIBs) by Sony in 1991, LIBs ha...
Silicon has demonstrated great potential as anode materials for next-generation high-energy density ...