The Structure and Electrical Properties of Li<sub>7</sub>La<sub>3</sub>Zr<sub>1.0</sub>Sn<sub>1.0</sub>O<sub>12 </sub>as Electrolyte Material for Li-ion Batteries
Author:
Affiliation:
1. Universiti Malaysia Perlis (UniMAP)
2. Universiti Malaysia Perlis
3. Centre of Excellence in Transportation Electrification and Energy Storage (CETEES)
4. Xair Group of Companies
Abstract
Publisher
Trans Tech Publications Ltd
Link
https://www.scientific.net/AST.118.27.pdf
Reference11 articles.
1. Goodenough, J.B. and Y. Kim, Challenges for rechargeable Li batteries. Chemistry of Materials, 2010. 22(3): pp.587-603.
2. Kim, J.H., N.P. Pieczonka, and L. Yang, Challenges and approaches for high-voltage spinel lithium-ion batteries. Chemphyschem, 2014. 15(10): pp.1940-1954.
3. Shoji, M., et al., Recent progress for all solid state battery using sulfide and oxide solid electrolytes. Journal of Physics D: Applied Physics, 2019. 52(10): p.103001.
4. Samson, A.J., et al., A bird's-eye view of Li-stuffed garnet-type Li7La3Zr2O12 ceramic electrolytes for advanced all-solid-state Li batteries. Energy & Environmental Science, 2019. 12(10): pp.2957-2975.
5. Kihira, Y., et al., Effect of simultaneous substitution of alkali earth metals and Nb in Li7La3Zr2O12 on lithium-ion conductivity. ECS Electrochemistry Letters, 2013. 2(7): p. A56A59.
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