Modifications of the local structure and lattice parameters in LiFe1x NixPO4 (0 < x < 0.15,0.9,1.0) olivine-type solid solutions have been studied by X-ray diffraction (XRD) and X-ray absorption spectroscopy (XAS). Samples have been synthesized and characterized in our laboratory, and a preliminary electrochemical characterization shows that Ni doping increases slightly the performances in Li-ion cells at low Ni concentrations x. Results of both XRD and XAS techniques are consistent and indicate ordering of Li in the M1 site, and of Fe and Ni in the M2 site of the olivine structure. Ni doping is found to induce an anisotropic shrinking of the unit cell with both Fe and Ni six-coordinated with oxygens, occupying distorted octahedral sites. ...
Transition metal substitution is a key strategy to optimize the functional properties of advanced cr...
Pure LiFePO4 and LiNi (x) Fe1-x PO4/C (x = 0.00-0.20) nanocomposite cathode materials have been synt...
AbstractOlivine-type LiNiPO4 has been considered as a most competitive positive electrode active mat...
Modifications of the local structure and lattice parameters in LiFe1x NixPO4 (0 < x < 0.15,0.9,1.0) ...
New materials with advanced functional properties are needed to improve the performances of energy s...
X-ray absorption spectroscopy was used to study the evolution of the local structure induced by nick...
The structural characteristics of olivine-type lithium orthophosphate Li(Mg0.5Ni0.5)PO4 synthesized ...
The structural characteristics of olivine-type lithium orthophosphate Li(Mg 0.5Ni 0.5)PO 4 synthesiz...
The recent infatuation for LiFePO4 as positive electrode material in Li-ion batteries has prompted a...
In this paper we report on the possibility of Li substitution by M2+ to various high degrees in LiMP...
Nanosize carbon-coated samples of the solid solution LiNi1−yCoyPO4 were prepared and investigated wi...
We present a detailed structural study of the LiNi1-xCoxPO4 (x = 0, 0.1, 0.2, 0.3, 0.4, and 0.5) pol...
none4X-ray Absorption Spectroscopy (XAS) was used to investigate the local structure arrangements of...
Lithium-ion batteries are a promising alternative to the already existing lead batteries, as an effi...
Olivine-type LiNiPO4 has been considered as a most competitive positive electrode active material fo...
Transition metal substitution is a key strategy to optimize the functional properties of advanced cr...
Pure LiFePO4 and LiNi (x) Fe1-x PO4/C (x = 0.00-0.20) nanocomposite cathode materials have been synt...
AbstractOlivine-type LiNiPO4 has been considered as a most competitive positive electrode active mat...
Modifications of the local structure and lattice parameters in LiFe1x NixPO4 (0 < x < 0.15,0.9,1.0) ...
New materials with advanced functional properties are needed to improve the performances of energy s...
X-ray absorption spectroscopy was used to study the evolution of the local structure induced by nick...
The structural characteristics of olivine-type lithium orthophosphate Li(Mg0.5Ni0.5)PO4 synthesized ...
The structural characteristics of olivine-type lithium orthophosphate Li(Mg 0.5Ni 0.5)PO 4 synthesiz...
The recent infatuation for LiFePO4 as positive electrode material in Li-ion batteries has prompted a...
In this paper we report on the possibility of Li substitution by M2+ to various high degrees in LiMP...
Nanosize carbon-coated samples of the solid solution LiNi1−yCoyPO4 were prepared and investigated wi...
We present a detailed structural study of the LiNi1-xCoxPO4 (x = 0, 0.1, 0.2, 0.3, 0.4, and 0.5) pol...
none4X-ray Absorption Spectroscopy (XAS) was used to investigate the local structure arrangements of...
Lithium-ion batteries are a promising alternative to the already existing lead batteries, as an effi...
Olivine-type LiNiPO4 has been considered as a most competitive positive electrode active material fo...
Transition metal substitution is a key strategy to optimize the functional properties of advanced cr...
Pure LiFePO4 and LiNi (x) Fe1-x PO4/C (x = 0.00-0.20) nanocomposite cathode materials have been synt...
AbstractOlivine-type LiNiPO4 has been considered as a most competitive positive electrode active mat...