In secondary (rechargeable) lithium batteries, with the layered material LiCoO2 used as one of the electrodes no substantial Li* ions can be inserted in this material; only the carbon electrode allows Lit ion insertion Lit ions react with LiCoO2 and major structural changes occur in the formation of Li1+xCoO2 upon charging of the battery None of the above the insertion of Li* ions can occur reversibly between the van der Waals layers, without bond breaking, hence the battery is rechargeable

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Chapter1: Chemical Foundations
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In secondary (rechargeable) lithium batteries, with the layered material LiCoO2
used as one of the electrodes
no substantial Li* ions can be inserted in this material; only the carbon electrode
allows Lit ion insertion
O Lit ions react with LiCoO2 and major structural changes occur in the formation of
Li1+xCoO2 upon charging of the battery
None of the above
the insertion of Li* ions can occur reversibly between the van der Waals layers,
without bond breaking, hence the battery is rechargeable
O on discharging the battery, Li* ions are removed from the LiCoO2 electrode, and the
material is reduced
Transcribed Image Text:In secondary (rechargeable) lithium batteries, with the layered material LiCoO2 used as one of the electrodes no substantial Li* ions can be inserted in this material; only the carbon electrode allows Lit ion insertion O Lit ions react with LiCoO2 and major structural changes occur in the formation of Li1+xCoO2 upon charging of the battery None of the above the insertion of Li* ions can occur reversibly between the van der Waals layers, without bond breaking, hence the battery is rechargeable O on discharging the battery, Li* ions are removed from the LiCoO2 electrode, and the material is reduced
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