LiCoPO4 (LCP) is a promising candidate as alternative cathode for high-voltage lithium-ion batteries. However, its practical electrochemical performances are still far from the theoretical data likely due to the low electronic and ionic conductivities. Moreover LCP typically suffers a rapid capacity fading upon cycling, probably due to structural degradations and electrolyte decomposition at 5 V vs. Li+/Li. Previous studies showed that carbon coating and metal doping may improve LCP electrochemical properties. In this work we report: (a) the fine tuning of a novel synthetic route at low temperature to obtain micrometric LCP crystallites morphologically homogeneous and crystallographically pure; (b) the analysis of the effect of iron...
Olivine-type lithium metal phosphates (LiMPO4) are promising cathode materials for lithium-ion batte...
Olivine-type lithium metal phosphates (LiMPO4) are promising cathode materials for lithium-ion batte...
Note : This article was published ASAP on September 21, 2018, with errors in Figures 1 and 3−5, Tabl...
LiCoPO4 (LCP) is a promising candidate as alternative cathode for high-voltage lithium-ion batteries...
LiCoPO4 (LCP) is a promising candidate as alternative cathode for high-voltage lithium-ion batteries...
LiCoPO4(LCP) is a promising candidate as alternative cathode for high-voltage lithium-ion batteries....
LiCoPO4 (LCP) is a challenging high voltage positive electrode material for next-generation secondar...
LiCoPO4 (LCP) is a challenging high voltage positive electrode material for next-generation secondar...
LiCoPO4 (LCP) is a challenging high voltage positive electrode material for next-generation secondar...
Factors affecting the cyclability of the Fe-substituted LiCoPO4 (LiCo0.8Fe0.2PO4, LCFP) material wer...
Carbon coated olivine Pnma LiCoPO4 (LCP/C) and Fe-substituted LiCo0.8Fe0.2PO4 (LCFP/C) were synthesi...
On the path toward the design of Li-ion batteries with increased energy densities, efforts are focus...
LiFePO₄ is still a promising cathode, which is inexpensive, nontoxic, environmentally benign, and mo...
Due to the ever-growing demand for higher energy density of lithium ion batteries, intensive researc...
Due to the ever-growing demand for higher energy density of lithium ion batteries, intensive researc...
Olivine-type lithium metal phosphates (LiMPO4) are promising cathode materials for lithium-ion batte...
Olivine-type lithium metal phosphates (LiMPO4) are promising cathode materials for lithium-ion batte...
Note : This article was published ASAP on September 21, 2018, with errors in Figures 1 and 3−5, Tabl...
LiCoPO4 (LCP) is a promising candidate as alternative cathode for high-voltage lithium-ion batteries...
LiCoPO4 (LCP) is a promising candidate as alternative cathode for high-voltage lithium-ion batteries...
LiCoPO4(LCP) is a promising candidate as alternative cathode for high-voltage lithium-ion batteries....
LiCoPO4 (LCP) is a challenging high voltage positive electrode material for next-generation secondar...
LiCoPO4 (LCP) is a challenging high voltage positive electrode material for next-generation secondar...
LiCoPO4 (LCP) is a challenging high voltage positive electrode material for next-generation secondar...
Factors affecting the cyclability of the Fe-substituted LiCoPO4 (LiCo0.8Fe0.2PO4, LCFP) material wer...
Carbon coated olivine Pnma LiCoPO4 (LCP/C) and Fe-substituted LiCo0.8Fe0.2PO4 (LCFP/C) were synthesi...
On the path toward the design of Li-ion batteries with increased energy densities, efforts are focus...
LiFePO₄ is still a promising cathode, which is inexpensive, nontoxic, environmentally benign, and mo...
Due to the ever-growing demand for higher energy density of lithium ion batteries, intensive researc...
Due to the ever-growing demand for higher energy density of lithium ion batteries, intensive researc...
Olivine-type lithium metal phosphates (LiMPO4) are promising cathode materials for lithium-ion batte...
Olivine-type lithium metal phosphates (LiMPO4) are promising cathode materials for lithium-ion batte...
Note : This article was published ASAP on September 21, 2018, with errors in Figures 1 and 3−5, Tabl...