In this study, LiFePO4/C is synthesized via a novel two-step method. The first step is the synthesis of nano-sized intermediate FePO4 by a modified sol–gel method. A fast and full combustion procedure is involved to remove carbon and control the size of the intermediate particles. The second step is to prepare LiFePO4/C by combining solid-state reaction with controllable carbon coating. This two-step method is facile to prepare nano-sized LiFePO4 and easy to optimize the carbon content for surface coating. X-ray diffraction shows that the LiFePO4/C composite possesses good crystallinity. Spherical morphology with a diameter of 30–150 nm is observed by scanning electron microscope and transmission electron microscope. Electrochemical measure...
Lithium iron phosphate has become of great interest as storage cathode for the next generation of re...
LiFePO4-Carbon (LFP/C) composites with high purity and good crystallinity were prepared by an improv...
Lithium iron phosphate has become of great interest as storage cathode for the next generation of re...
In this work, LiFePO4/C composite were synthesized via a green route by using Iron (III) oxide (Fe2O...
LiFePO4 and LiFePO4/C composites were prepared by mechanical activation process using Fe3+ precursor...
Microparticles of LiFePO4/C composites are prepared as cathode materials for lithium rechargeable ba...
A nano-LiFePO4/C composite has been directly synthesized from micrometer-sized Li2CO3, NH4H2PO4, and...
Abstract: Nano-sized composite with LiFePO4-core and carbon-shell was synthesized via a facile route...
A novel preparation technique was developed for synthesizing carbon-coated LiFePO nanoparticles thro...
From the viewpoint of energy efficiency and cost, an intensive search for less energy demanding synt...
In the on-going search for alternative cathode materials for Li-ion batteries olivine-type lithium i...
In the on-going search for alternative cathode materials for Li-ion batteries olivine-type lithium i...
Spherical LiFePO_4/C cathode materials were successfully prepared by spray pyrolysis. Particle size,...
Spherical LiFePO_4/C cathode materials were successfully prepared by spray pyrolysis. Particle size,...
In the on-going search for alternative cathode materials for Li-ion batteries olivine-type lithium i...
Lithium iron phosphate has become of great interest as storage cathode for the next generation of re...
LiFePO4-Carbon (LFP/C) composites with high purity and good crystallinity were prepared by an improv...
Lithium iron phosphate has become of great interest as storage cathode for the next generation of re...
In this work, LiFePO4/C composite were synthesized via a green route by using Iron (III) oxide (Fe2O...
LiFePO4 and LiFePO4/C composites were prepared by mechanical activation process using Fe3+ precursor...
Microparticles of LiFePO4/C composites are prepared as cathode materials for lithium rechargeable ba...
A nano-LiFePO4/C composite has been directly synthesized from micrometer-sized Li2CO3, NH4H2PO4, and...
Abstract: Nano-sized composite with LiFePO4-core and carbon-shell was synthesized via a facile route...
A novel preparation technique was developed for synthesizing carbon-coated LiFePO nanoparticles thro...
From the viewpoint of energy efficiency and cost, an intensive search for less energy demanding synt...
In the on-going search for alternative cathode materials for Li-ion batteries olivine-type lithium i...
In the on-going search for alternative cathode materials for Li-ion batteries olivine-type lithium i...
Spherical LiFePO_4/C cathode materials were successfully prepared by spray pyrolysis. Particle size,...
Spherical LiFePO_4/C cathode materials were successfully prepared by spray pyrolysis. Particle size,...
In the on-going search for alternative cathode materials for Li-ion batteries olivine-type lithium i...
Lithium iron phosphate has become of great interest as storage cathode for the next generation of re...
LiFePO4-Carbon (LFP/C) composites with high purity and good crystallinity were prepared by an improv...
Lithium iron phosphate has become of great interest as storage cathode for the next generation of re...