The thermal instability of the LiCoO2 cathode material was greatly improved by the nanoparticle AlPO4 coating. The AlPO4 coating appears to minimize the violent exothermic reaction of the cathode with the flammable electrolytes, resulting in excellent thermal stability even at the overcharged state. Moreover, the results of the overcharge and elevated temperature cycling tests show that, when compared with the spinel Li1.05Mn1.95O4, the AlPO4 nanoparticle coating results not only in enhanced thermal stability of the cathodes but also in reduced Co dissolution in the electrolytes.close394
Surface modification as a method for enhancing the cyclability of LiCoO2 cathodes is reviewed. The p...
"AlPO 4"-coated LiCoO 2 was shown to exhibit markedly improved capacity retention relative to bare L...
Structural changes of bare and AIPO(4)-coated LiCoO2 with a coating thickness of 20 and 200 nm are i...
The thickness of an AlPO4 coating significantly affects the thermal stability of a LiCOO2 cathode. I...
The electrochemical properties of AlPO4-coated LiCoO 2 cathodes prepared in a water or ethanol solve...
The thermal stability and electrochemical properties of P2O5-coated and AlPO4-coated LiCoO2 powders ...
2 cat than t ermic xothe rate 25°C opart is evi te and 511 # A recei tion of the cathode with the el...
A significant improvement in thermal stability of the charged LiCoO2 with a particle size of 5 ??m h...
Metal-phosphate-coated LiCoO2 cathode materials were studied for the electrochemical properties. Al-...
The electrochemical properties of AlPO4-coated LiCoO2 cathodes were found to be superior to those of...
AlPO4 coating thickness on LiCoO2 cathodes was controlled in the range on the order of 10-100 nm by ...
Although LiNi0.8Co0.1Mn0.1O2 cathode material has a larger specific capacity than LiCoO2, their ther...
The electrochemical and thermal stability of LiNi0.8Co0.16Al0.04O2 were studied before and after Co3...
This study examined the electrochemical and structural stability of ???1.5 wt.% AlPO4-coated LiNi0.9...
A significant improvement in high temperature performance of LiMn2O4 cathode material has been achie...
Surface modification as a method for enhancing the cyclability of LiCoO2 cathodes is reviewed. The p...
"AlPO 4"-coated LiCoO 2 was shown to exhibit markedly improved capacity retention relative to bare L...
Structural changes of bare and AIPO(4)-coated LiCoO2 with a coating thickness of 20 and 200 nm are i...
The thickness of an AlPO4 coating significantly affects the thermal stability of a LiCOO2 cathode. I...
The electrochemical properties of AlPO4-coated LiCoO 2 cathodes prepared in a water or ethanol solve...
The thermal stability and electrochemical properties of P2O5-coated and AlPO4-coated LiCoO2 powders ...
2 cat than t ermic xothe rate 25°C opart is evi te and 511 # A recei tion of the cathode with the el...
A significant improvement in thermal stability of the charged LiCoO2 with a particle size of 5 ??m h...
Metal-phosphate-coated LiCoO2 cathode materials were studied for the electrochemical properties. Al-...
The electrochemical properties of AlPO4-coated LiCoO2 cathodes were found to be superior to those of...
AlPO4 coating thickness on LiCoO2 cathodes was controlled in the range on the order of 10-100 nm by ...
Although LiNi0.8Co0.1Mn0.1O2 cathode material has a larger specific capacity than LiCoO2, their ther...
The electrochemical and thermal stability of LiNi0.8Co0.16Al0.04O2 were studied before and after Co3...
This study examined the electrochemical and structural stability of ???1.5 wt.% AlPO4-coated LiNi0.9...
A significant improvement in high temperature performance of LiMn2O4 cathode material has been achie...
Surface modification as a method for enhancing the cyclability of LiCoO2 cathodes is reviewed. The p...
"AlPO 4"-coated LiCoO 2 was shown to exhibit markedly improved capacity retention relative to bare L...
Structural changes of bare and AIPO(4)-coated LiCoO2 with a coating thickness of 20 and 200 nm are i...