This paper reports an “all in one” procedure to produce mesoporous, micro-spherical LiFePO4 composed of agglomerated crystalline nanoparticles. Each nanoparticle is individually coated with a thin glucose-derived carbon layer. The main advantage of the as-synthesized materials is their good performance at high charge-discharge rates. The nanoparticles and the mesoporosity guarantee a short bulk diffusion distance for both lithium ions and electrons, as well as additional active sites for the charge transfer reactions. At the same time, the thin interconnected carbon coating provides a conductive framework capable of delivering electrons to the nanostructured LiFePO4
A nanocomposite cathode based on LiFePO4 (LF) nanoparticles embedded 3D cubic ordered mesoporous car...
Abstract: Nano-sized composite with LiFePO4-core and carbon-shell was synthesized via a facile route...
Carbon-coated LiFePO4 (C-LiFePO4) nanocomposites particles have been scale-up synthesized by a direc...
Recent studies have shown that the power capability of LiFePO4 is dramatically enhanced by reducing ...
Olivine LiFePO4 is considered one of the most promising cathode materials for Li-ion batteries. A si...
Olivine LiFePO4 is considered one of the most promising cathode materials for Li-ion batteries. A si...
Abstract Porous-carbon/LiFePO4 nanocomposites were synthesized by a simple one-step sol–gel process ...
To overcome the low lithium ion diffusion and slow electron transfer, a hollow micro sphere LiFePO4/...
To overcome the low lithium ion diffusion and slow electron transfer, a hollow micro sphere LiFePO4/...
Mesoporous LiFePO4 cathode material resembling the structure of Swiss-cheese was prepared by a one-p...
Mesoporous LiFePO4 cathode material resembling the structure of Swiss-cheese was prepared by a one-p...
To overcome the low lithium ion diffusion and slow electron transfer, a hollow micro sphere LiFePO 4...
In this study, LiFePO4/C is synthesized via a novel two-step method. The first step is the synthesis...
Lithium iron phosphate (LiFePO4) is a potential cathode material for lithium-ion batteries due to it...
A microspherical, hollow LiFePO<sub>4</sub> (LFP) cathode material with polycrystal structure was si...
A nanocomposite cathode based on LiFePO4 (LF) nanoparticles embedded 3D cubic ordered mesoporous car...
Abstract: Nano-sized composite with LiFePO4-core and carbon-shell was synthesized via a facile route...
Carbon-coated LiFePO4 (C-LiFePO4) nanocomposites particles have been scale-up synthesized by a direc...
Recent studies have shown that the power capability of LiFePO4 is dramatically enhanced by reducing ...
Olivine LiFePO4 is considered one of the most promising cathode materials for Li-ion batteries. A si...
Olivine LiFePO4 is considered one of the most promising cathode materials for Li-ion batteries. A si...
Abstract Porous-carbon/LiFePO4 nanocomposites were synthesized by a simple one-step sol–gel process ...
To overcome the low lithium ion diffusion and slow electron transfer, a hollow micro sphere LiFePO4/...
To overcome the low lithium ion diffusion and slow electron transfer, a hollow micro sphere LiFePO4/...
Mesoporous LiFePO4 cathode material resembling the structure of Swiss-cheese was prepared by a one-p...
Mesoporous LiFePO4 cathode material resembling the structure of Swiss-cheese was prepared by a one-p...
To overcome the low lithium ion diffusion and slow electron transfer, a hollow micro sphere LiFePO 4...
In this study, LiFePO4/C is synthesized via a novel two-step method. The first step is the synthesis...
Lithium iron phosphate (LiFePO4) is a potential cathode material for lithium-ion batteries due to it...
A microspherical, hollow LiFePO<sub>4</sub> (LFP) cathode material with polycrystal structure was si...
A nanocomposite cathode based on LiFePO4 (LF) nanoparticles embedded 3D cubic ordered mesoporous car...
Abstract: Nano-sized composite with LiFePO4-core and carbon-shell was synthesized via a facile route...
Carbon-coated LiFePO4 (C-LiFePO4) nanocomposites particles have been scale-up synthesized by a direc...