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A review on lithium iron phosphate cathode materials

Fey Tingkuo, Lin Yiquan

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Abstract

Globally,the development of a high-power lithium-ion battery is focused on lithium manganese oxide batteries,lithium cobalt nickel manganese batteries and lithium iron phosphate batteries.Lithium iron phosphate is regarded as a practical and popular cathode material for high power lithium-ion batteries due to its high capacity,high rate capability,long cycle life,superior thermal stability and good high-temperature performance.However,the problems associated with commercial production of lithium iron phosphate material are its difficult manufacturing processes and poor material reproducibility.We combined a number of innovative concepts and techniques in the fabrication processes for high quality lithium iron phosphate.Two methods:carbon coating on the surface of the powders and metal cations doping into the crystal lattice have been used to enhance the electronic conductivity and lithium-ion diffusion of LiFePO4 material,respectively.Moreover,effective control of carbon content,surface area,uniformity of carbon layers,and particle-size distribution of powder materials were also used for the production of LiFePO4 with good reproducibility.In this paper,some pertinent results from the above work will be reviewed and discussed.

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What this paper is about

Globally,the development of a high-power lithium-ion battery is focused on lithium manganese oxide batteries,lithium cobalt nickel manganese batteries and lithium iron phosphate batteries.Lithium iron phosphate is regarded as a practical and popular cathode material for high power lithium-ion batteries due to its high capacity,high rate capability,long cycle life,superior thermal stability and good high-temperature performance.However,the problems associated with commercial production of lithium iron phosphate material are its difficult manufacturing processes and poor material reproducibility.We combined a number of innovative concepts and techniques in the fabrication processes for high quality lithium iron phosphate.Two methods:carbon coating on the surface of the powders and metal cations doping into the crystal lattice have been used to enhance the electronic conductivity and lithium-ion diffusion of LiFePO4 material,respectively.Moreover,effective control of carbon content,surface area,uniformity of carbon layers,and particle-size distribution of powder materials were also used for the production of LiFePO4 with good reproducibility.In this paper,some pertinent results from the above work will be reviewed and discussed.

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Available abstract

Globally,the development of a high-power lithium-ion battery is focused on lithium manganese oxide batteries,lithium cobalt nickel manganese batteries and lithium iron phosphate batteries.Lithium iron phosphate is regarded as a practical and popular cathode material for high power lithium-ion batteries due to its high capacity,high rate capability,long cycle life,superior thermal stability and good high-temperature performance.However,the problems associated with commercial production of lithium iron phosphate material are its difficult manufacturing processes and poor material reproducibility.We combined a number of innovative concepts and techniques in the fabrication processes for high quality lithium iron phosphate.Two methods:carbon coating on the surface of the powders and metal cations doping into the crystal lattice have been used to enhance the electronic conductivity and lithium-ion diffusion of LiFePO4 material,respectively.Moreover,effective control of carbon content,surface area,uniformity of carbon layers,and particle-size distribution of powder materials were also used for the production of LiFePO4 with good reproducibility.In this paper,some pertinent results from the above work will be reviewed and discussed.

Key concepts: Lithium iron phosphate, Materials science, Lithium vanadium phosphate battery, Lithium (medication), Iron phosphate, Battery (electricity), Manganese, Carbon black

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