Battery industries and research groups are further investigating LiCoO2 to unravel the capacity at high-voltages (\u3e4.3 vs Li). The research trends are towards the surface modification of the LiCoO2 and stabilize it structurally and chemically. In this report, the recent progress in the surface-coating materials i.e., single-element, binary, and ternary hybrid-materials etc. and their coating methods are illustrated. Further, the importance of evaluating the surface-coated LiCoO2 in the Li-ion full-cell is highlighted with our recent results. Mg,P-coated LiCoO2 full-cells exhibit excellent thermal stability, high-temperature cycle and room-temperature rate capabilities with high energy-density of ¿1.4 W h cc-1 at 10 C and 4.35 V. Besides,...
A mass scalable dry-coating method was used on a LiCoO2 cathode to improve cycling stability at 60 d...
[[abstract]]The high capacity cathode materials with charge voltage above 4.5 V are widely being dev...
Li2CO3-coated LiCoO2 powders are prepared from a lithium hydroxide solution via low-temperature heat...
Cathode material degradation during cycling is one of the key obstacles to upgrading lithium-ion and...
Cathode material degradation during cycling is one of the key obstacles to upgrading lithium-ion and...
Chemical etching concurrently modifies pristine to layer-by-layer 3D-LiCoO 2 with a Co 3O 4 coating....
Lithium oxides are the most promising cathode candidates for high-performance lithium-ion batteries ...
A high-performance LiCoO2 cathode was successively fabricated by a sol-gel coating of Al2O3 to the L...
The thermodynamic instability of the LiCoO2 layered structure at >0.5Li extraction has been consider...
The improved cycling properties of LiCoO2 cathodes are reviewed in this article. Three methods of co...
The practical application of high-voltage lithium cobalt oxide (LCO) has been hampered by the severe...
Although various cathode materials have been explored to improve the energy density of lithium-ion b...
High-voltage LiCoO2 has been revisited to improve the energy density of lithium ion batteries. LiCoO...
Ultrathin atomic layer deposition ͑ALD͒ coatings enhance the performance of lithium-ion batteries ͑L...
Motivated by new applications including electric vehicles and the smart grid, interest in advanced l...
A mass scalable dry-coating method was used on a LiCoO2 cathode to improve cycling stability at 60 d...
[[abstract]]The high capacity cathode materials with charge voltage above 4.5 V are widely being dev...
Li2CO3-coated LiCoO2 powders are prepared from a lithium hydroxide solution via low-temperature heat...
Cathode material degradation during cycling is one of the key obstacles to upgrading lithium-ion and...
Cathode material degradation during cycling is one of the key obstacles to upgrading lithium-ion and...
Chemical etching concurrently modifies pristine to layer-by-layer 3D-LiCoO 2 with a Co 3O 4 coating....
Lithium oxides are the most promising cathode candidates for high-performance lithium-ion batteries ...
A high-performance LiCoO2 cathode was successively fabricated by a sol-gel coating of Al2O3 to the L...
The thermodynamic instability of the LiCoO2 layered structure at >0.5Li extraction has been consider...
The improved cycling properties of LiCoO2 cathodes are reviewed in this article. Three methods of co...
The practical application of high-voltage lithium cobalt oxide (LCO) has been hampered by the severe...
Although various cathode materials have been explored to improve the energy density of lithium-ion b...
High-voltage LiCoO2 has been revisited to improve the energy density of lithium ion batteries. LiCoO...
Ultrathin atomic layer deposition ͑ALD͒ coatings enhance the performance of lithium-ion batteries ͑L...
Motivated by new applications including electric vehicles and the smart grid, interest in advanced l...
A mass scalable dry-coating method was used on a LiCoO2 cathode to improve cycling stability at 60 d...
[[abstract]]The high capacity cathode materials with charge voltage above 4.5 V are widely being dev...
Li2CO3-coated LiCoO2 powders are prepared from a lithium hydroxide solution via low-temperature heat...