Abstract

The conversion reactions associated with mesoporous and nanowire Co(3)O(4) when used as negative electrodes in rechargeable lithium batteries have been investigated. Initially, Li is intercalated into Co(3)O(4) up to x approximately 1.5 Li in Li(x)Co(3)O(4). Thereafter, both materials form a nanocomposite of Co particles imbedded in Li(2)O, which on subsequent charge forms CoO. The capacities on cycling increase on initial cycles to values exceeding the theoretical value for Co(3)O(4) + 8 Li(+) + 8e(-) --> 4 Li(2)O + 3 Co, 890 mAhg(-1), and this is interpreted as due to charge storage in a polymer layer that forms on the high surface area of nanowire and mesoporous Co(3)O(4). After 15 cycles, the capacity decreases drastically for the nanowires due to formation of grains that are separated one from another by a thick polymer layer, leading to electrical isolation. In contrast, the mesoporous Co(3)O(4) losses its mesoporosity and forms a morphology similar to bulk Co(3)O(4) (Co particles imbedded in Li(2)O matrix) with which it exhibits a similar capacity on cycling. In contrast to mesoporous lithium intercalation compounds, which show superior capacity at high rates compared to bulk materials, mesoporosity does not seem to improve the capacity of conversion reactions on extended cycling. If, however, mesoporosity could be retained during the conversion reaction, then higher capacities could be obtained in such systems.

Keywords

Mesoporous materialMaterials scienceLithium (medication)NanowireElectrodeChemical engineeringIntercalation (chemistry)NanocompositeNanotechnologyInorganic chemistryChemistryOrganic chemistryCatalysisPhysical chemistry

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Publication Info

Year
2007
Type
article
Volume
9
Issue
15
Pages
1837-1842
Citations
384
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K. M. Shaju, Feng Jiao, Aurélie Débart et al. (2007). Mesoporous and nanowire Co<sub>3</sub>O<sub>4</sub>as negative electrodes for rechargeable lithium batteries. Physical Chemistry Chemical Physics , 9 (15) , 1837-1842. https://doi.org/10.1039/b617519h

Identifiers

DOI
10.1039/b617519h