LiCoO2 cathodes coated with Al2O3 generated from carboxylate–alumoxanes have demonstrated sustainable extended cyclability. The carboxylate–alumoxanes were prepared by reacting boehmite with acetic and substituted acetic acids. TEM images of the coated powders revealed that the coatings were compact and had an average thickness of about 20 nm. XRD data on the coated materials indicated minor changes in the values of the lattice parameters, suggesting the formation of solid solutions of the composition LiAlyCo1–yO2 on the surface during calcination. ESCA depth profiles of the constituent elements in the coated particles support this theory. R-factor values from XRD analysis and galvanostatic cycling studies suggest that a 1.0 wt. % coa...
Metal-phosphate coating on LiCoO2 cathodes improved the cycle-life performance with high charge-cuto...
Cell tests demonstrated that the use of an AlF3 coating enabled a LiCoO2 electrode to deliver a high...
LiAlO2-surface modified LiMn1.58Ni0.42O4 spinel cathode materials have been prepared by coating Al2O...
LiCoO2 cathodes coated with Al2O3 derived from carboxylate-alumoxanes have been shown to possess imp...
The enhanced cyclability of LiCoO2 coated with MgAl2O4 is described. A TEM examination of the micros...
A high-performance LiCoO2 cathode was successively fabricated by a sol-gel coating of Al2O3 to the L...
Structural instability of LiCoO2 can be improved by sol-gel coating of Al2O3 and subsequent heat-tre...
The improved cycling properties of LiCoO2 cathodes are reviewed in this article. Three methods of co...
The electrochemical stability of LiCoO2 films is improved by an ???10 nm Al2O3 coating on top of the...
Improved cycling properties and thermal stability of LiCoO2 coated with cobalt oxides by a wet chemi...
A simple mechano-thermal coating procedure for the production of long-cycling LiCoO2 is described. P...
A simple, economical and convenient mechano-thermal coating procedure for the production of LiCoO2 w...
A facile wet-chemical method to coat nano-LiCoO2 particles is investigated and established in this s...
Surface modification as a method for enhancing the cyclability of LiCoO2 cathodes is reviewed. The p...
The cycling properties of LiCoO2 coated with TiO2 by a sol–gel process from an alkoxide precursor an...
Metal-phosphate coating on LiCoO2 cathodes improved the cycle-life performance with high charge-cuto...
Cell tests demonstrated that the use of an AlF3 coating enabled a LiCoO2 electrode to deliver a high...
LiAlO2-surface modified LiMn1.58Ni0.42O4 spinel cathode materials have been prepared by coating Al2O...
LiCoO2 cathodes coated with Al2O3 derived from carboxylate-alumoxanes have been shown to possess imp...
The enhanced cyclability of LiCoO2 coated with MgAl2O4 is described. A TEM examination of the micros...
A high-performance LiCoO2 cathode was successively fabricated by a sol-gel coating of Al2O3 to the L...
Structural instability of LiCoO2 can be improved by sol-gel coating of Al2O3 and subsequent heat-tre...
The improved cycling properties of LiCoO2 cathodes are reviewed in this article. Three methods of co...
The electrochemical stability of LiCoO2 films is improved by an ???10 nm Al2O3 coating on top of the...
Improved cycling properties and thermal stability of LiCoO2 coated with cobalt oxides by a wet chemi...
A simple mechano-thermal coating procedure for the production of long-cycling LiCoO2 is described. P...
A simple, economical and convenient mechano-thermal coating procedure for the production of LiCoO2 w...
A facile wet-chemical method to coat nano-LiCoO2 particles is investigated and established in this s...
Surface modification as a method for enhancing the cyclability of LiCoO2 cathodes is reviewed. The p...
The cycling properties of LiCoO2 coated with TiO2 by a sol–gel process from an alkoxide precursor an...
Metal-phosphate coating on LiCoO2 cathodes improved the cycle-life performance with high charge-cuto...
Cell tests demonstrated that the use of an AlF3 coating enabled a LiCoO2 electrode to deliver a high...
LiAlO2-surface modified LiMn1.58Ni0.42O4 spinel cathode materials have been prepared by coating Al2O...