The influence of different conductive additives (carbon nanofibers (CNFs), carbon nanoplatelets, and pyrolytic carbon from sucrose (Sucr) or polyvinylidene fluoride) on the morphology, electron conductivity, and electrochemical performance of LiFePO4-based cathodes was investigated to develop the most efficient strategy for the fabrication of high-rate cathodes. Pyrolytic carbon effectively prevents the growth of LiFePO4 grains and provides contact between them, CNFs provide fast long-range conductive pathways, while carbon nanoplatelets can be embedded in carbon coatings as high-conductive “points” which enhance the rate capability and decrease the capacity fading of LFP. The LiFePO4/CSucr/CNF showed better performance than the other catho...
LiFePO4 was synthesized in the presence of high-surface area carbon-black. The carbon was added to t...
The electrochemical performance of LiFePO4/C composites in lithium cells is closely correlated to pr...
Temperature glycine assisted solid-state synthesis was used to prepare LiFePO4/C composite samples w...
Abstract: 摇 The effects of carbonaceous materials on the physical and electrochemical performance of...
Carbon coated lithium iron phosphates were prepared by a carbon aerogel synthesis process, through w...
Submicron-sized hydrothermal-grown LiFePO4 particles were added into sucrose-water solution followed...
LiFePO4 (LFPO)has great potential as the cathode material for lithium-ion batteries; it has a high t...
The electrochemical performance of LiFePO4/C composites in lithium cells is closely correlated to pr...
Conductive carbon additives with different surface area and particle size, alone or in different com...
The electrochemical performance of LiFePO{sub 4}/C composites in lithium cells is closely correlated...
Conductive carbon additives with different surface area and particle size, alone or in different com...
Conductive carbon additives with different surface area and particle size, alone or in different com...
Lithium iron phosphate (LiFePO4) is a promising cathode material for lithium-ion batteries. In the p...
Conductive carbon additives with different surface area and particle size, alone or in different com...
Li-ion batteries are in demand due to technological advancements in the electronics industry; thus, ...
LiFePO4 was synthesized in the presence of high-surface area carbon-black. The carbon was added to t...
The electrochemical performance of LiFePO4/C composites in lithium cells is closely correlated to pr...
Temperature glycine assisted solid-state synthesis was used to prepare LiFePO4/C composite samples w...
Abstract: 摇 The effects of carbonaceous materials on the physical and electrochemical performance of...
Carbon coated lithium iron phosphates were prepared by a carbon aerogel synthesis process, through w...
Submicron-sized hydrothermal-grown LiFePO4 particles were added into sucrose-water solution followed...
LiFePO4 (LFPO)has great potential as the cathode material for lithium-ion batteries; it has a high t...
The electrochemical performance of LiFePO4/C composites in lithium cells is closely correlated to pr...
Conductive carbon additives with different surface area and particle size, alone or in different com...
The electrochemical performance of LiFePO{sub 4}/C composites in lithium cells is closely correlated...
Conductive carbon additives with different surface area and particle size, alone or in different com...
Conductive carbon additives with different surface area and particle size, alone or in different com...
Lithium iron phosphate (LiFePO4) is a promising cathode material for lithium-ion batteries. In the p...
Conductive carbon additives with different surface area and particle size, alone or in different com...
Li-ion batteries are in demand due to technological advancements in the electronics industry; thus, ...
LiFePO4 was synthesized in the presence of high-surface area carbon-black. The carbon was added to t...
The electrochemical performance of LiFePO4/C composites in lithium cells is closely correlated to pr...
Temperature glycine assisted solid-state synthesis was used to prepare LiFePO4/C composite samples w...