Cite this article:
Xiqian Yu, Enyuan Hu, Seongmin Bak, Yong-Ning Zhou, Xiao-Qing Yang. Strategies to curb structural changes of lithium/transition metal oxide cathode materials & the changes' effects on thermal & cycling stabilityJ. Chin. Phys. B, 2016, 25(1): 018205.
| Xiqian Yu, Enyuan Hu, Seongmin Bak, Yong-Ning Zhou, Xiao-Qing Yang. Strategies to curb structural changes of lithium/transition metal oxide cathode materials & the changes' effects on thermal & cycling stabilityJ. Chin. Phys. B, 2016, 25(1): 018205. |
Strategies to curb structural changes of lithium/transition metal oxide cathode materials & the changes' effects on thermal & cycling stability
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Abstract
Structural transformation behaviors of several typical oxide cathode materials during a heating process are reviewed in detail to provide in-depth understanding of the key factors governing the thermal stability of these materials. We also discuss applying the information about heat induced structural evolution in the study of electrochemically induced structural changes. All these discussions are expected to provide valuable insights for designing oxide cathode materials with significantly improved structural stability for safe, long-life lithium ion batteries, as the safety of lithium-ion batteries is a critical issue; it is widely accepted that the thermal instability of the cathodes is one of the most critical factors in thermal runaway and related safety problems. -
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