Influence of structure and atom sites on Sn-based anode materials for lithium ion batteries: a first-principle study
Author:
Publisher
Springer Science and Business Media LLC
Subject
Multidisciplinary
Link
http://link.springer.com/content/pdf/10.1007/s11434-014-0137-5.pdf
Reference24 articles.
1. Scrosati B (1995) Challenge of portable power. Nature 373:557–558
2. Megahed S, Scrosati B (1994) Lithium–ion rechargeable batteries. J Power Sour 51:79–104
3. Galobardes F, Wang C, Madou M (2006) Investigation on the solid electrolyte interface formed on pyrolyzed photoresist carbon anodes for C-MEMS lithium–ion batteries. Diam Rel Mat 15:1930–1934
4. Nishikawa K, Fukunaka Y, Sakka T et al (2007) In situ measurement of lithium mass transfer during charging and discharging of a Ni–Sn alloy electrode. J Power Sour 174:668–672
5. Ahn JH, Wang GX, Yao J et al (2003) Tin-based composite materials as anode materials for Li–ion batteries. J Power Sour 119–121:45–49
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