Metal oxide-based coatings have been applied on LiCoO2 particles in order to allow the use of water as solvent in the manufacturing process of the cathodes for Li-ion batteries. The coating has been obtained by oxidation of a metallic layer deposited on the particles with electroless deposition. The treatment allowed the deposition of a copper (II) oxide layer on the particles as shown by XPS analysis. SEM investigation demonstrates that particles morphology is unchanged after the plating process. The treatment does not The electrodes manufactured with the coated powders of active material show an increased resistance to chemical decomposition in aqueous environment, as shown by electrochemical performances assessment, evaluated by means o...
Battery industries and research groups are further investigating LiCoO2 to unravel the capacity at h...
Ultrathin atomic layer deposition ͑ALD͒ coatings enhance the performance of lithium-ion batteries ͑L...
Li2CO3-coated LiCoO2 powders are prepared from a lithium hydroxide solution via low-temperature heat...
Metal oxide-based coatings have been applied on LiCoO2 particles in order to allow the use of water ...
The present work shows a way to develop an industrial organic solvent-free process for lithium-ion b...
peer reviewedA simple, low-cost, and environmentally friendly water-based colloidal spraypainting pr...
The improved cycling properties of LiCoO2 cathodes are reviewed in this article. Three methods of co...
LiCoO2 particles about 300 nm in size were synthesized by the Pechini method. LiCoO2 modified using ...
[[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...
A dry powder deposition technique, namely electrostatic spray deposition (ESD), has been investigate...
The effect of LiCoO2 cathode nanoparticle size on high-rate performance in Li-ion batteries was inve...
Improved cycling properties and thermal stability of LiCoO2 coated with cobalt oxides by a wet chemi...
Surface modification as a method for enhancing the cyclability of LiCoO2 cathodes is reviewed. The p...
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...
Ultrathin atomic layer deposition ͑ALD͒ coatings enhance the performance of lithium-ion batteries ͑L...
Li2CO3-coated LiCoO2 powders are prepared from a lithium hydroxide solution via low-temperature heat...
Metal oxide-based coatings have been applied on LiCoO2 particles in order to allow the use of water ...
The present work shows a way to develop an industrial organic solvent-free process for lithium-ion b...
peer reviewedA simple, low-cost, and environmentally friendly water-based colloidal spraypainting pr...
The improved cycling properties of LiCoO2 cathodes are reviewed in this article. Three methods of co...
LiCoO2 particles about 300 nm in size were synthesized by the Pechini method. LiCoO2 modified using ...
[[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...
A dry powder deposition technique, namely electrostatic spray deposition (ESD), has been investigate...
The effect of LiCoO2 cathode nanoparticle size on high-rate performance in Li-ion batteries was inve...
Improved cycling properties and thermal stability of LiCoO2 coated with cobalt oxides by a wet chemi...
Surface modification as a method for enhancing the cyclability of LiCoO2 cathodes is reviewed. The p...
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...
Ultrathin atomic layer deposition ͑ALD͒ coatings enhance the performance of lithium-ion batteries ͑L...
Li2CO3-coated LiCoO2 powders are prepared from a lithium hydroxide solution via low-temperature heat...