Lithium iron phosphate (LFP) has attracted tremendous attention as an electrode material for next-generation lithium-rechargeable battery systems due to the use of low-cost iron and its electrochemical stability. While the lithium diffusion in LFP, the essential property in battery operation, is relatively fast due to the one-dimensional tunnel present in the olivine crystal, the tunnel is inherently vulnerable to the presence of FeLi anti-site defects (Fe ions in Li ion sites), if any, that block the lithium diffusion and lead to inferior performance. Herein, we demonstrate that the kinetic issue arising from the FeLi defects in LFP can be completely eliminated in lithium-excess olivine LFP. The presence of an excess amount of lithium in t...
LiFePO₄ is still a promising cathode, which is inexpensive, nontoxic, environmentally benign, and mo...
We report a comparative study of the electrochemical lithium diffusion properties within the olivine...
Lithium iron phosphate (LiFePO4) is one of the cheapest and safest materials used as the positive el...
Lithium iron phosphate (LFP) has attracted tremendous attention as an electrode material for next-ge...
학위논문 (박사)-- 서울대학교 대학원 : 재료공학부, 2016. 2. 강기석.Lithium iron phosphate (LFP) has attracted much attentio...
In the search for new positive-electrode materials for lithium-ion batteries, recent research has fo...
Lithium iron phosphate, a widely used cathode material, crystallizes typically in olivine-type phase...
Olivine lithium iron phosphate is a technologically important electrode material for lithium-ion bat...
Defects critically affect the properties of materials. Thus, controlling the defect concentration of...
Defects critically affect the properties of materials. Thus, controlling the defect concentration of...
Li-ion battery technology is currently the most efficient form of electrochemical energy storage. Th...
Li-ion battery technology is currently the most efficient form of electrochemical energy storage. Th...
Li-ion battery technology is currently the most efficient form of electrochemical energy storage. Th...
LiCoPO4 (LCP) is a challenging high voltage positive electrode material for next-generation secondar...
Li-ion battery technology is currently the most efficient form of electrochemical energy storage. Th...
LiFePO₄ is still a promising cathode, which is inexpensive, nontoxic, environmentally benign, and mo...
We report a comparative study of the electrochemical lithium diffusion properties within the olivine...
Lithium iron phosphate (LiFePO4) is one of the cheapest and safest materials used as the positive el...
Lithium iron phosphate (LFP) has attracted tremendous attention as an electrode material for next-ge...
학위논문 (박사)-- 서울대학교 대학원 : 재료공학부, 2016. 2. 강기석.Lithium iron phosphate (LFP) has attracted much attentio...
In the search for new positive-electrode materials for lithium-ion batteries, recent research has fo...
Lithium iron phosphate, a widely used cathode material, crystallizes typically in olivine-type phase...
Olivine lithium iron phosphate is a technologically important electrode material for lithium-ion bat...
Defects critically affect the properties of materials. Thus, controlling the defect concentration of...
Defects critically affect the properties of materials. Thus, controlling the defect concentration of...
Li-ion battery technology is currently the most efficient form of electrochemical energy storage. Th...
Li-ion battery technology is currently the most efficient form of electrochemical energy storage. Th...
Li-ion battery technology is currently the most efficient form of electrochemical energy storage. Th...
LiCoPO4 (LCP) is a challenging high voltage positive electrode material for next-generation secondar...
Li-ion battery technology is currently the most efficient form of electrochemical energy storage. Th...
LiFePO₄ is still a promising cathode, which is inexpensive, nontoxic, environmentally benign, and mo...
We report a comparative study of the electrochemical lithium diffusion properties within the olivine...
Lithium iron phosphate (LiFePO4) is one of the cheapest and safest materials used as the positive el...