Traditional electrode materials are based on the redox potential difference of the electrode in the course of intercalation/deintercalation reactions. They are generally well-crystalline host compounds either with layered structure such as LiCoO2 and LiNiO2 , or with tunnel structure like LiMn2O4 Nanocrystalline materials are, however, being re-evaluated recently as ‘nanoscience' advances. The electrochemistry of this kind of materials is much different from that of traditional crystalline ones because of their significant ‘surface effects'. In connection with that, the nanocrystalline cathode materials are reported to have an enhanced electrochemical activity when the first significative electrochemical step is insertion of Li ions (discha...
Rechargeable batteries have already conquered the market of portable electronics (i.e., mobile phone...
The kinetics and the processes governing the electrochemical reactions of various types of iron oxid...
This work presents the recent progress in nanostructured materials used as positive electrodes in Li...
Aditional electrode materials are based on the redox potential difference of the electrode in the c...
Aditional electrode materials are based on the redox potential difference of the electrode in the co...
International audienceNew nanostructured manganese oxi-iodides were prepared by redox reaction of so...
Only a small number of Li-containing cathode materials groups are considered for practical use in Li...
Electrolyte additions are used to control the functionality of a nanostructured oxide. Dopant ions a...
New nanocrystalline manganese oxides as cathode materials for lithium batteries: electron microscopy...
Nanoscale materials offer the advantage of combining structural effects (inside grain structure) wit...
Surface Nanoparticles modifications have been observed on alumina coated LiMn2O4(LMO) cathodes with ...
textLithium-ion batteries have become attractive for portable electronic devices due to their highe...
Building a stable chemical environment at the cathode/electrolyte interface is directly linked to th...
International audienceX-ray amorphous manganese oxides were prepared by reduction of sodium permanga...
Rechargeable batteries have already conquered the market of portable electronics (i.e., mobile phone...
The kinetics and the processes governing the electrochemical reactions of various types of iron oxid...
This work presents the recent progress in nanostructured materials used as positive electrodes in Li...
Aditional electrode materials are based on the redox potential difference of the electrode in the c...
Aditional electrode materials are based on the redox potential difference of the electrode in the co...
International audienceNew nanostructured manganese oxi-iodides were prepared by redox reaction of so...
Only a small number of Li-containing cathode materials groups are considered for practical use in Li...
Electrolyte additions are used to control the functionality of a nanostructured oxide. Dopant ions a...
New nanocrystalline manganese oxides as cathode materials for lithium batteries: electron microscopy...
Nanoscale materials offer the advantage of combining structural effects (inside grain structure) wit...
Surface Nanoparticles modifications have been observed on alumina coated LiMn2O4(LMO) cathodes with ...
textLithium-ion batteries have become attractive for portable electronic devices due to their highe...
Building a stable chemical environment at the cathode/electrolyte interface is directly linked to th...
International audienceX-ray amorphous manganese oxides were prepared by reduction of sodium permanga...
Rechargeable batteries have already conquered the market of portable electronics (i.e., mobile phone...
The kinetics and the processes governing the electrochemical reactions of various types of iron oxid...
This work presents the recent progress in nanostructured materials used as positive electrodes in Li...