AbstractOlivine-type LiNiPO4 has been considered as a most competitive positive electrode active material for lithium-ion batteries. In the present paper, the LiNiPO4 and Co-doped LiNi0.5Co0.5PO4 are synthesized by solid-state reaction method under air atmosphere. All the X-ray diffraction peaks of both the compounds are indexed and it is found that the samples are well crystallized in orthorhombic olivine structure belonging to the space group Pnma. The crystallite size is calculated from the Scherrer formula and it is found to be 6.918 and 4.818nm for pure and doped samples, respectively. The surface morphology and grain sizes of the materials are investigated through scanning electron microscope. Presence of preferred local cation enviro...
Europium doped LiNiPO4 and undoped LiNiPO4 were prepared by Pechini method. Compound formation tempe...
LiMnPO₄ is a potential cathode for lithium-ion battery of high thermal stability, low cost, environm...
Continuous evolution of electrode materials still has not correspond today’s energy storage system n...
AbstractOlivine-type LiNiPO4 has been considered as a most competitive positive electrode active mat...
Olivine-type LiNiPO4 has been considered as a most competitive positive electrode active material fo...
The olivine structured LiNi0.75Mg0.25-xCuxPO4 (x = 0, 0.05 and 0.1) cathode materials were synthesiz...
Olivine structured lithium transition metal phosphates are interesting cathode materials for lithium...
Acetates of lithium (LiC2H3O2) and nickel (NiC2H3O2) together with ammonium dihydrogen phosphate (NH...
The carbon-free LiNiPO4 and cobalt doped LiNi1-xCoxPO4/C (x = 0.0-1.0) were synthesized and investig...
Olivine-structured pure LiNiPO(4) and yttrium-doped LiNiPO(4) have been synthesized by a Pechini-typ...
We present a detailed structural study of the LiNi1-xCoxPO4 (x = 0, 0.1, 0.2, 0.3, 0.4, and 0.5) pol...
Nanosize carbon-coated samples of the solid solution LiNi1−yCoyPO4 were prepared and investigated wi...
Four structurally related materials; LiNiPO₄, LiCoPO₄, Li₃Fe₂(PO₄)₃ and Li₃V₂(PO₄)₃, were synthesise...
LiMnPO4 nanoparticles synthesized by the polyol method were examined as a cathode material for advan...
Lithium transition metal phosphate, LiMPO4 compounds with olivine structure namely LiMnPO4, LiNiPO4 ...
Europium doped LiNiPO4 and undoped LiNiPO4 were prepared by Pechini method. Compound formation tempe...
LiMnPO₄ is a potential cathode for lithium-ion battery of high thermal stability, low cost, environm...
Continuous evolution of electrode materials still has not correspond today’s energy storage system n...
AbstractOlivine-type LiNiPO4 has been considered as a most competitive positive electrode active mat...
Olivine-type LiNiPO4 has been considered as a most competitive positive electrode active material fo...
The olivine structured LiNi0.75Mg0.25-xCuxPO4 (x = 0, 0.05 and 0.1) cathode materials were synthesiz...
Olivine structured lithium transition metal phosphates are interesting cathode materials for lithium...
Acetates of lithium (LiC2H3O2) and nickel (NiC2H3O2) together with ammonium dihydrogen phosphate (NH...
The carbon-free LiNiPO4 and cobalt doped LiNi1-xCoxPO4/C (x = 0.0-1.0) were synthesized and investig...
Olivine-structured pure LiNiPO(4) and yttrium-doped LiNiPO(4) have been synthesized by a Pechini-typ...
We present a detailed structural study of the LiNi1-xCoxPO4 (x = 0, 0.1, 0.2, 0.3, 0.4, and 0.5) pol...
Nanosize carbon-coated samples of the solid solution LiNi1−yCoyPO4 were prepared and investigated wi...
Four structurally related materials; LiNiPO₄, LiCoPO₄, Li₃Fe₂(PO₄)₃ and Li₃V₂(PO₄)₃, were synthesise...
LiMnPO4 nanoparticles synthesized by the polyol method were examined as a cathode material for advan...
Lithium transition metal phosphate, LiMPO4 compounds with olivine structure namely LiMnPO4, LiNiPO4 ...
Europium doped LiNiPO4 and undoped LiNiPO4 were prepared by Pechini method. Compound formation tempe...
LiMnPO₄ is a potential cathode for lithium-ion battery of high thermal stability, low cost, environm...
Continuous evolution of electrode materials still has not correspond today’s energy storage system n...