LiFe1-xMnxPO4/C composite materials as cathode materials in Li-ion batteries have been synthesised and their electrochemical properties have been investigated. The samples were synthesised by using high energy ball milling of commercially available precursors (Li2C2O4, FeC2O4.2H2O, MnC2O4.2H2O, NH4H2PO4) and then heated at 600°C. The morphology and structure of the heated samples were analysed by means of SEM and X-ray diffraction. The olivine structure of the LiFe1-xMnxPO4/C composite was obtained. A slight shift of the peaks to smaller 2θ angles with the increasing Mn/Fe ratios is observed due to the increase in lattice parameters. The influence of different Mn/Fe ratios on electrical and electrochemical performances were studie...
C-LiFePO4 composite was synthesized by mechano-chemical activation using iron and lithium phosphates...
In this work, the effect of carbon on the electrochemical properties of multiwalled carbon nanotube ...
In an intensive exploration for alternative cathode materials, the olivine structure of LiFePO4 was ...
Carbon coated LiFe0·4Mn0·6PO4 (LiFe0·4Mn0·6PO4/C) was synthesised using ...
Mn-doped LiFePO4/C cathode materials were synthesized by a carbothermal reduction technique using su...
LiFePO4, olivine-type LiFe0.9Mn0.1PO4/Fe2P composite was synthesized by mechanical alloying of carbo...
Olivine structure LiFe1−xVxPO4/C (x = 0.02, 0.04, 0.06) composite materials as the cathode for lithi...
Olivine compounds LiFe1-xMnxPO4 (0.0 = x = 0.3) for cathodes of secondary lithium-ion batteries were...
Highly energy density olivine LiMn0.7Fe0.3PO4/C composite was synthesized by coprecipitation method ...
Lithium iron phosphate (LiFePO4)/lithium manganese phosphate (LiMnPO4)-positive material was success...
A LiFe0.6Mn0.4PO4 (LFMP) cathode exploiting the olivine structure is herein synthesized and characte...
Nano-sized 5LiFePO4·Li3V2(PO4)3/C composite was synthesized via improved carbothermal reduction comb...
Olivine-type compounds of structural formula LiMPO4 (M=Fe, Mn, and Co) were prepared by sol-gel meth...
Effects of ball milling way and time on the phase formation, particulate morphology, carbon content,...
The polyanion cathodes for Li-ion batteries, namely LiFePO4, Li2FeP2O7 and Li2FeSiO4, were synthesiz...
C-LiFePO4 composite was synthesized by mechano-chemical activation using iron and lithium phosphates...
In this work, the effect of carbon on the electrochemical properties of multiwalled carbon nanotube ...
In an intensive exploration for alternative cathode materials, the olivine structure of LiFePO4 was ...
Carbon coated LiFe0·4Mn0·6PO4 (LiFe0·4Mn0·6PO4/C) was synthesised using ...
Mn-doped LiFePO4/C cathode materials were synthesized by a carbothermal reduction technique using su...
LiFePO4, olivine-type LiFe0.9Mn0.1PO4/Fe2P composite was synthesized by mechanical alloying of carbo...
Olivine structure LiFe1−xVxPO4/C (x = 0.02, 0.04, 0.06) composite materials as the cathode for lithi...
Olivine compounds LiFe1-xMnxPO4 (0.0 = x = 0.3) for cathodes of secondary lithium-ion batteries were...
Highly energy density olivine LiMn0.7Fe0.3PO4/C composite was synthesized by coprecipitation method ...
Lithium iron phosphate (LiFePO4)/lithium manganese phosphate (LiMnPO4)-positive material was success...
A LiFe0.6Mn0.4PO4 (LFMP) cathode exploiting the olivine structure is herein synthesized and characte...
Nano-sized 5LiFePO4·Li3V2(PO4)3/C composite was synthesized via improved carbothermal reduction comb...
Olivine-type compounds of structural formula LiMPO4 (M=Fe, Mn, and Co) were prepared by sol-gel meth...
Effects of ball milling way and time on the phase formation, particulate morphology, carbon content,...
The polyanion cathodes for Li-ion batteries, namely LiFePO4, Li2FeP2O7 and Li2FeSiO4, were synthesiz...
C-LiFePO4 composite was synthesized by mechano-chemical activation using iron and lithium phosphates...
In this work, the effect of carbon on the electrochemical properties of multiwalled carbon nanotube ...
In an intensive exploration for alternative cathode materials, the olivine structure of LiFePO4 was ...