Facet-controlled synthesis of phospho-olivine (LiMPO<sub>4</sub>, M = Mn, Fe, Co) cathode materials is of particular interest to manipulate their electrochemical properties because of their anisotropic ionic transport behavior. This study provides a general facet-controlled synthesis of single-crystalline LiMPO<sub>4</sub> (M = Mn, Fe, Co) nanosheets with significantly large exposure of (010)-facets, which has not been readily achieved by conventional solution-based coprecipitation or solid-reaction methods. The as-obtained nanosheets show controllable thickness with the thinnest thickness down to 15–20 nm and lateral dimension up to ∼5 μm. Due to the shortened lithium ion diffusion pathway and high ratio of active surface enabled by the th...
Olivine LiFePO4 has garnered the most interest because of its environmental benignity, high safety a...
Ce mémoire est consacré à la recherche de matériaux d'électrode positive pour batteries Li-ion et pl...
Microwave heating presents a faster, lower energy synthetic methodology for the realization of funct...
The peculiarities of LiMPO4 (M = Fe, Mn, Co, Ni) formation with controlled platelike crystal shape u...
International audienceIonothermal synthesis was recently reported as a very attractive method to des...
Polyanion framework olivine materials have attracted large attention as cathodes in LIBs. Recently, ...
Nanostructured materials lie at the heart of fundamental advances in efficient energy storage and/or...
Abstract Nanostructured cathode materials based on Mn-doped olivine LiMnxFe1−xPO4 (x = 0, 0.1, 0.2, ...
Olivine-type lithium manganese phosphate (LiMnPO<sub>4</sub>) has been considered as a promising cat...
The lithiation/delithiation in LiFePO<sub>4</sub> is highly anisotropic with lithium-ion diffusion b...
Microwave or ultrasonic treatment of metal alkoxides presents a fast, low cost route to both anode a...
A new strategy for the fabrication of binder- and carbon-free electrodes for lithium ion batteries i...
Electrochemically active LiMnPO4 nanoplates have been synthesized via a novel, single-step, solid-st...
Lithium transition-metal phosphates, LiMPO<sub>4</sub> (M = Mn, Fe, Co, and Ni), have attracted sign...
Manganese-based mixed polyanion cathodes known as LiMn1-xFexPO4 can show much higher energy density ...
Olivine LiFePO4 has garnered the most interest because of its environmental benignity, high safety a...
Ce mémoire est consacré à la recherche de matériaux d'électrode positive pour batteries Li-ion et pl...
Microwave heating presents a faster, lower energy synthetic methodology for the realization of funct...
The peculiarities of LiMPO4 (M = Fe, Mn, Co, Ni) formation with controlled platelike crystal shape u...
International audienceIonothermal synthesis was recently reported as a very attractive method to des...
Polyanion framework olivine materials have attracted large attention as cathodes in LIBs. Recently, ...
Nanostructured materials lie at the heart of fundamental advances in efficient energy storage and/or...
Abstract Nanostructured cathode materials based on Mn-doped olivine LiMnxFe1−xPO4 (x = 0, 0.1, 0.2, ...
Olivine-type lithium manganese phosphate (LiMnPO<sub>4</sub>) has been considered as a promising cat...
The lithiation/delithiation in LiFePO<sub>4</sub> is highly anisotropic with lithium-ion diffusion b...
Microwave or ultrasonic treatment of metal alkoxides presents a fast, low cost route to both anode a...
A new strategy for the fabrication of binder- and carbon-free electrodes for lithium ion batteries i...
Electrochemically active LiMnPO4 nanoplates have been synthesized via a novel, single-step, solid-st...
Lithium transition-metal phosphates, LiMPO<sub>4</sub> (M = Mn, Fe, Co, and Ni), have attracted sign...
Manganese-based mixed polyanion cathodes known as LiMn1-xFexPO4 can show much higher energy density ...
Olivine LiFePO4 has garnered the most interest because of its environmental benignity, high safety a...
Ce mémoire est consacré à la recherche de matériaux d'électrode positive pour batteries Li-ion et pl...
Microwave heating presents a faster, lower energy synthetic methodology for the realization of funct...