Enhancing the energy density of safer Li-ion batteries by combining high-voltage lithium cobalt fluorophosphate cathodes and nanostructured titania anodes
Author:
Publisher
Springer Science and Business Media LLC
Subject
Multidisciplinary
Link
http://www.nature.com/articles/srep20656.pdf
Reference39 articles.
1. Amine, K., Tukamoto, H., Yasuda, H. & Fujita, Y. A new three-volt spinel Li1+xMn1.5Ni0.5O4 for secondary lithium batteries. J. Electrochem. Soc. 143, 1607–1613 (1996).
2. Kim, M. G. & Cho, J. Reversible and High-Capacity Nanostructured Electrode Materials for Li-Ion Batteries. Adv. Funct. Mater. 19, 1497–1514 (2009).
3. Fey, G. T. K., Li, W. & Dahn, J. R. LiNiVO4 - A 4.8 volt electrode material for lithium cells. J. Electrochem. Soc. 141, 2279–2282 (1994).
4. Kraytsberg, A. & Ein-Eli, Y. Higher, Stronger, Better … A Review of 5 Volt Cathode Materials for Advanced Lithium-Ion Batteries . Adv. Energy. Mater. 2, 922–939 (2012).
5. Amine, K., Yasuda, H. & Yamachi, M. Olivine LiCoPO4 as 4.8 V electrode material for lithium batteries. Electrochem. Solid-State Lett. 3, 178–179 (2000).
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