We describe the thermodynamics and kinetics that govern the precipitation of pure powders of phosphates phases of interest for Li-battery applications. We found precise procedures for the formation of three distinct crystalline forms of FePO4.2H(2)O and of pure LiMnPO4. Our attempts to precipitate either LiCoPO4 or LiFePO4, on the other hand, failed. In this latter case, optimized electrodes for battery applications were synthesized through a chemical conductive carbon coating at the surface of LiFePO4 prepared by evaporation of an Fe-III-containing aqueous solution. (C) 2004 Elsevier B.V. All rights reserved
LiFePO4 is currently subject to extensive studies as a positive electrode material for a new generat...
Lithium iron phosphate (LiFePO4) is an interesting candidate for Li-ion cathode applications because...
International audienceThis paper describes the preparation, characterization and electrochemical stu...
Pure and well-crystallized LiMnPO4 powders were obtained by a direct precipitation route in an aqueo...
In this dissertation, a practical and streamlined route for the synthesis of carbonized lithium iron...
LiFeP O4 is presently the most studied electrode material for battery applications. It can be prepar...
Olivine structure LiFePO4 attracted much attention as a promising cathode material for lithium-ion b...
Lithium iron phosphate (LiFePO4) is a promising cathode material for lithium ion batteries because i...
LiFePO4 is presently the most studied electrode material for battery applications. It can be prepare...
As opposed to ceramic methods, low-temperature solvothermal-hydrothermal methods using liquid media ...
Formula is presently the most studied electrode material for battery applications. It can be prepare...
Lithium iron phosphate, a widely used cathode material in Lithium Ion Batteries (LIBs), crystallizes...
Air pollution is a global problem. Transportation is one of the major contributors. Using electric v...
In this paper a method for the synthesis of nano-sized microcrystalline LiFePO4, which is particular...
International audienceThis paper describes the preparation, characterization and electrochemical stu...
LiFePO4 is currently subject to extensive studies as a positive electrode material for a new generat...
Lithium iron phosphate (LiFePO4) is an interesting candidate for Li-ion cathode applications because...
International audienceThis paper describes the preparation, characterization and electrochemical stu...
Pure and well-crystallized LiMnPO4 powders were obtained by a direct precipitation route in an aqueo...
In this dissertation, a practical and streamlined route for the synthesis of carbonized lithium iron...
LiFeP O4 is presently the most studied electrode material for battery applications. It can be prepar...
Olivine structure LiFePO4 attracted much attention as a promising cathode material for lithium-ion b...
Lithium iron phosphate (LiFePO4) is a promising cathode material for lithium ion batteries because i...
LiFePO4 is presently the most studied electrode material for battery applications. It can be prepare...
As opposed to ceramic methods, low-temperature solvothermal-hydrothermal methods using liquid media ...
Formula is presently the most studied electrode material for battery applications. It can be prepare...
Lithium iron phosphate, a widely used cathode material in Lithium Ion Batteries (LIBs), crystallizes...
Air pollution is a global problem. Transportation is one of the major contributors. Using electric v...
In this paper a method for the synthesis of nano-sized microcrystalline LiFePO4, which is particular...
International audienceThis paper describes the preparation, characterization and electrochemical stu...
LiFePO4 is currently subject to extensive studies as a positive electrode material for a new generat...
Lithium iron phosphate (LiFePO4) is an interesting candidate for Li-ion cathode applications because...
International audienceThis paper describes the preparation, characterization and electrochemical stu...