Surface modification as a method for enhancing the cyclability of LiCoO2 cathodes is reviewed. The performances of TiO2 and ZrO2, and their mixed oxide, ZrTiO4, as coating materials, are compared. Coating techniques such as sol–gel and mechano-thermal processes are described. Structural data and morphology of the oxide-coated LiCoO2 are correlated with electrochemical behavior. Their enhanced cyclability is attributed to the suppression of the cycle-limiting phase transitions accompanying the charge–discharge processes. The higher cyclability of the mixed oxide-coated cathodes over those coated with the corresponding individual oxides is also demonstrated. It is also shown that the nature of the core material and the sol–gel precursors...
The electrochemical cycling and storage characteristics of LiCo0.96M0.04O2 and M-3(PO4)(2) nanoparti...
A mass scalable dry-coating method was used on a LiCoO2 cathode to improve cycling stability at 60 d...
Battery industries and research groups are further investigating LiCoO2 to unravel the capacity at h...
The improved cycling properties of LiCoO2 cathodes are reviewed in this article. Three methods of co...
The cycling properties of LiCoO2 coated with TiO2 by a sol–gel process from an alkoxide precursor an...
[[abstract]]LiCoO2 spinel is one of the most promising cathode materials for Li-ion batteries. Howev...
A simple, economical and convenient mechano-thermal coating procedure for the production of LiCoO2 w...
Improved cycling properties and thermal stability of LiCoO2 coated with cobalt oxides by a wet chemi...
The enhanced cyclability of LiCoO2 coated with MgAl2O4 is described. A TEM examination of the micros...
Metal-phosphate-coated LiCoO2 cathode materials were studied for the electrochemical properties. Al-...
[[abstract]]LiCoO2 is the most widely used cathode material for Li-ion batteries. However, the struc...
The thermal instability of the LiCoO2 cathode material was greatly improved by the nanoparticle AlPO...
[[abstract]]The cycle life of LiCoO2 cathodes cycled at a high cutoff voltage can be largely improve...
The electrochemical cycling and storage characteristics of LiCo0.96 M0.04 O2 and M3 (PO4)2 nanoparti...
[[abstract]]Surface modification of LiCoO2 by metal oxides was verified to be an effective way to re...
The electrochemical cycling and storage characteristics of LiCo0.96M0.04O2 and M-3(PO4)(2) nanoparti...
A mass scalable dry-coating method was used on a LiCoO2 cathode to improve cycling stability at 60 d...
Battery industries and research groups are further investigating LiCoO2 to unravel the capacity at h...
The improved cycling properties of LiCoO2 cathodes are reviewed in this article. Three methods of co...
The cycling properties of LiCoO2 coated with TiO2 by a sol–gel process from an alkoxide precursor an...
[[abstract]]LiCoO2 spinel is one of the most promising cathode materials for Li-ion batteries. Howev...
A simple, economical and convenient mechano-thermal coating procedure for the production of LiCoO2 w...
Improved cycling properties and thermal stability of LiCoO2 coated with cobalt oxides by a wet chemi...
The enhanced cyclability of LiCoO2 coated with MgAl2O4 is described. A TEM examination of the micros...
Metal-phosphate-coated LiCoO2 cathode materials were studied for the electrochemical properties. Al-...
[[abstract]]LiCoO2 is the most widely used cathode material for Li-ion batteries. However, the struc...
The thermal instability of the LiCoO2 cathode material was greatly improved by the nanoparticle AlPO...
[[abstract]]The cycle life of LiCoO2 cathodes cycled at a high cutoff voltage can be largely improve...
The electrochemical cycling and storage characteristics of LiCo0.96 M0.04 O2 and M3 (PO4)2 nanoparti...
[[abstract]]Surface modification of LiCoO2 by metal oxides was verified to be an effective way to re...
The electrochemical cycling and storage characteristics of LiCo0.96M0.04O2 and M-3(PO4)(2) nanoparti...
A mass scalable dry-coating method was used on a LiCoO2 cathode to improve cycling stability at 60 d...
Battery industries and research groups are further investigating LiCoO2 to unravel the capacity at h...