Four differently prepared aluminum fluoride samples were tested as cathode materials for rechargeable lithium batteries. The charge–discharge results showed an initial capacity of over 900 mAh g−1 for most of the samples at a voltage of around 2 V, giving specific energy densities of over 7405 kJ kg−1, higher than many commercial materials. The cycling results showed an initial high-capacity with rapid capacity fade. The reversible conversion reaction of aluminum fluoride was shown to follow the reduction of AlF3 into LiF and Al during discharge and upon charge Al would be oxidized to form AlF3 and Li again. It was found that not all the AlF3 would be oxidized due to the large surface/interfacial energy produced by the production of nano Li...
FeF₃ possesses a high theoretical capacity of 712 mAh g⁻¹ owing to the three-electron reaction. Howe...
La2CoO4 has been introduced as a promising intercalation-based cathode material for all-solid-state ...
The development of high energy density and sustainable all-solid-state lithium batteries relies on t...
In recent years, energy storage and conversion have become key areas of research to address social a...
More energy dense lithium ion batteries are essential for the production of long-range electric vehi...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Materials Science and Engineeri...
Lithium ion batteries are fast becoming the consumer choice for powering their electronic devices. ...
Transition metal fluorides are an appealing alternative to conventional intercalation compounds for ...
With the most recent development of ultrahigh capacity anodes, such as Li- or Si-based anodes, metal...
Lithium-ion batteries are the enabling technology for a variety of modern day devices, including cel...
Promising theoretical capacities and high voltages are offered by Li-rich disordered rocksalt oxyflu...
Due to their high theoretical energy density values, Fluoride Ion Batteries (FIB) are interesting al...
Aluminum (Al) batteries, with merits of cost effectiveness, safe handle, high capacity and dendrite-...
Energy is one of the biggest challenges of the 21st century. Factors such as the decline in availabi...
The cycle lives for cathodes of nanocrystalline iron trifluoride (FeF_3) were measured in rechargeab...
FeF₃ possesses a high theoretical capacity of 712 mAh g⁻¹ owing to the three-electron reaction. Howe...
La2CoO4 has been introduced as a promising intercalation-based cathode material for all-solid-state ...
The development of high energy density and sustainable all-solid-state lithium batteries relies on t...
In recent years, energy storage and conversion have become key areas of research to address social a...
More energy dense lithium ion batteries are essential for the production of long-range electric vehi...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Materials Science and Engineeri...
Lithium ion batteries are fast becoming the consumer choice for powering their electronic devices. ...
Transition metal fluorides are an appealing alternative to conventional intercalation compounds for ...
With the most recent development of ultrahigh capacity anodes, such as Li- or Si-based anodes, metal...
Lithium-ion batteries are the enabling technology for a variety of modern day devices, including cel...
Promising theoretical capacities and high voltages are offered by Li-rich disordered rocksalt oxyflu...
Due to their high theoretical energy density values, Fluoride Ion Batteries (FIB) are interesting al...
Aluminum (Al) batteries, with merits of cost effectiveness, safe handle, high capacity and dendrite-...
Energy is one of the biggest challenges of the 21st century. Factors such as the decline in availabi...
The cycle lives for cathodes of nanocrystalline iron trifluoride (FeF_3) were measured in rechargeab...
FeF₃ possesses a high theoretical capacity of 712 mAh g⁻¹ owing to the three-electron reaction. Howe...
La2CoO4 has been introduced as a promising intercalation-based cathode material for all-solid-state ...
The development of high energy density and sustainable all-solid-state lithium batteries relies on t...