A mass scalable dry-coating method was used on a LiCoO2 cathode to improve cycling stability at 60 degrees C and, in contrast to the conventional wet-coating method, this one did not require a solvent. Electrochemical results of the MgF2, Al2O3, and TiO2 coatings on LiCoO2 cathodes showed a fast capacity fade, resulting in < 10% capacity retention at 60 degrees C under 1C rate cycling, whereas an uncoated cathode showed 64% retention. This difference was believed to be because the residual coating layers which did not react with the bulk layer accelerated the side reactions with the electrolytes at 60 degrees C, leading to increased formation of the surface films. However, when MgCO3 and AlPO4 were used for dry coating, the coating layer...
AlPO4 coating thickness on LiCoO2 cathodes was controlled in the range on the order of 10-100 nm by ...
The thermal instability of the LiCoO2 cathode material was greatly improved by the nanoparticle AlPO...
[[abstract]]Surface modification of LiCoO2 by metal oxides was verified to be an effective way to re...
The improved cycling properties of LiCoO2 cathodes are reviewed in this article. Three methods of co...
A high-performance LiCoO2 cathode was successively fabricated by a sol-gel coating of Al2O3 to the L...
The cycling performance of a LiNi0.8Co0.15Al0.05O2 cathode at 60 degrees C was substantially improve...
Battery industries and research groups are further investigating LiCoO2 to unravel the capacity at h...
Improved cycling properties and thermal stability of LiCoO2 coated with cobalt oxides by a wet chemi...
A simple, economical and convenient mechano-thermal coating procedure for the production of LiCoO2 w...
Metal-phosphate coating on LiCoO2 cathodes improved the cycle-life performance with high charge-cuto...
The thermal stability and electrochemical properties of P2O5-coated and AlPO4-coated LiCoO2 powders ...
High-voltage LiCoO2 has been revisited to improve the energy density of lithium ion batteries. LiCoO...
The electrochemical stability of LiCoO2 films is improved by an ???10 nm Al2O3 coating on top of the...
Structural instability of LiCoO2 can be improved by sol-gel coating of Al2O3 and subsequent heat-tre...
LiCoO2 has been widely used in lithium ion batteries for digital electronic products. However, the l...
AlPO4 coating thickness on LiCoO2 cathodes was controlled in the range on the order of 10-100 nm by ...
The thermal instability of the LiCoO2 cathode material was greatly improved by the nanoparticle AlPO...
[[abstract]]Surface modification of LiCoO2 by metal oxides was verified to be an effective way to re...
The improved cycling properties of LiCoO2 cathodes are reviewed in this article. Three methods of co...
A high-performance LiCoO2 cathode was successively fabricated by a sol-gel coating of Al2O3 to the L...
The cycling performance of a LiNi0.8Co0.15Al0.05O2 cathode at 60 degrees C was substantially improve...
Battery industries and research groups are further investigating LiCoO2 to unravel the capacity at h...
Improved cycling properties and thermal stability of LiCoO2 coated with cobalt oxides by a wet chemi...
A simple, economical and convenient mechano-thermal coating procedure for the production of LiCoO2 w...
Metal-phosphate coating on LiCoO2 cathodes improved the cycle-life performance with high charge-cuto...
The thermal stability and electrochemical properties of P2O5-coated and AlPO4-coated LiCoO2 powders ...
High-voltage LiCoO2 has been revisited to improve the energy density of lithium ion batteries. LiCoO...
The electrochemical stability of LiCoO2 films is improved by an ???10 nm Al2O3 coating on top of the...
Structural instability of LiCoO2 can be improved by sol-gel coating of Al2O3 and subsequent heat-tre...
LiCoO2 has been widely used in lithium ion batteries for digital electronic products. However, the l...
AlPO4 coating thickness on LiCoO2 cathodes was controlled in the range on the order of 10-100 nm by ...
The thermal instability of the LiCoO2 cathode material was greatly improved by the nanoparticle AlPO...
[[abstract]]Surface modification of LiCoO2 by metal oxides was verified to be an effective way to re...