Lithium iron phosphate with incorporated carbon, LiFePO4-C, was synthesized by the microwave-assisted method. X-ray diffraction analyses showed higher crystallization degrees for samples submitted to higher irradiation times. A particle-agglomerated morphology was associated as revealed by scanning electron microscopy. The electrochemical character-istics of a composite cathode containing the synthesized product were evaluated. The two-phase electrochemical process between FePO4 and LiFePO4 was evidenced in the cycling voltammogram profile and its reversibility and stability were demonstrated. An additional redox reversible reaction was revealed and assigned to another phosphate present in the synthesized product. The charge/discharge perfo...
Nanostructured LiFePO4/C composites having ordered olivine structure are prepared by a newly elabora...
Nanostructured LiFePO4/C composites having ordered olivine structure are prepared by a newly elabora...
LiFePO4/C was prepared by solid-state reaction from Li3PO4, Fe3(PO4)2.8H2O, carbon and glucose in a ...
Lithium iron phosphate with incorporated carbon, LiFePO4-C, was synthesized by the microwave-assiste...
Abstract. Nanostructured LiFePO4 powder with a narrow particle size (ca. 100 nm) for high rate lithi...
A Mo-doped LiFePO4 composite was prepared successfully from an iron carbonyl complex by adopting a f...
Different routes for lithium iron phosphate (LiFePO4) synthesis were studied in a microwave-assisted...
Orthorhombic LiFePO<sub>4</sub>/C composite material with olivine structure was prepared by microwav...
LiFePO4/C composites were prepared by using organo-phosphonates as a source of iron, phosphorus and ...
Carbon coated lithium iron phosphates were prepared by a carbon aerogel synthesis process, through w...
LiFePO4 was synthesized in the presence of high-surface area carbon-black. The carbon was added to t...
Synthetic conditions and electrochemical characters of electrode materials mainly depend on the prec...
LiFePO4/C was prepared by solid-state reaction from Li3PO4, Fe3(PO4)2.8H2O, carbon and glucose in a ...
LiFePO4/C was prepared by solid-state reaction from Li3PO4, Fe3(PO4)2.8H2O, carbon and glucose in a ...
LiFePO4/C composites were prepared by using organo-phosphonates as a single source of iron, phosphor...
Nanostructured LiFePO4/C composites having ordered olivine structure are prepared by a newly elabora...
Nanostructured LiFePO4/C composites having ordered olivine structure are prepared by a newly elabora...
LiFePO4/C was prepared by solid-state reaction from Li3PO4, Fe3(PO4)2.8H2O, carbon and glucose in a ...
Lithium iron phosphate with incorporated carbon, LiFePO4-C, was synthesized by the microwave-assiste...
Abstract. Nanostructured LiFePO4 powder with a narrow particle size (ca. 100 nm) for high rate lithi...
A Mo-doped LiFePO4 composite was prepared successfully from an iron carbonyl complex by adopting a f...
Different routes for lithium iron phosphate (LiFePO4) synthesis were studied in a microwave-assisted...
Orthorhombic LiFePO<sub>4</sub>/C composite material with olivine structure was prepared by microwav...
LiFePO4/C composites were prepared by using organo-phosphonates as a source of iron, phosphorus and ...
Carbon coated lithium iron phosphates were prepared by a carbon aerogel synthesis process, through w...
LiFePO4 was synthesized in the presence of high-surface area carbon-black. The carbon was added to t...
Synthetic conditions and electrochemical characters of electrode materials mainly depend on the prec...
LiFePO4/C was prepared by solid-state reaction from Li3PO4, Fe3(PO4)2.8H2O, carbon and glucose in a ...
LiFePO4/C was prepared by solid-state reaction from Li3PO4, Fe3(PO4)2.8H2O, carbon and glucose in a ...
LiFePO4/C composites were prepared by using organo-phosphonates as a single source of iron, phosphor...
Nanostructured LiFePO4/C composites having ordered olivine structure are prepared by a newly elabora...
Nanostructured LiFePO4/C composites having ordered olivine structure are prepared by a newly elabora...
LiFePO4/C was prepared by solid-state reaction from Li3PO4, Fe3(PO4)2.8H2O, carbon and glucose in a ...