Synthesis of TiO sub(2) hollow nanofibers by co-axial electrospinning and its superior lithium storage capability in full-cell assembly with olivine phosphate

We report the formation and extraordinary Li-storage properties of TiO sub(2) hollow nanofibers by co-axial electrospinning in both the half-cell and full-cell configurations. Li-insertion properties are first evaluated as anodes in the half-cell configuration (Li/TiO sub(2) hollow nanofibers) and w...

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Veröffentlicht in:Nanoscale 2013-06, Vol.5 (13), p.5973-5980
Hauptverfasser: Zhang, X, Aravindan, V, Kumar, PSuresh, Liu, H, Sundaramurthy, J, Ramakrishna, S, Madhavi, S
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Sprache:eng
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Zusammenfassung:We report the formation and extraordinary Li-storage properties of TiO sub(2) hollow nanofibers by co-axial electrospinning in both the half-cell and full-cell configurations. Li-insertion properties are first evaluated as anodes in the half-cell configuration (Li/TiO sub(2) hollow nanofibers) and we found that reversible insertion of similar to 0.45 moles is feasible at a current density of 100 mA g super(-1). The half-cell displayed a good cyclability and retained 84% of its initial reversible capacity after 300 galvanostatic cycles. The full-cell is fabricated with a commercially available olivine phase LiFePO sub(4) cathode under optimized mass loading. The LiFePO sub(4)/TiO sub(2) hollow nanofiber cell delivered a reversible capacity of 103 mA h g super(-1) at a current density of 100 mA g super(-1) with an operating potential of similar to 1.4 V. Excellent cyclability is noted for the full-cell configuration, irrespective of the applied current densities, and it retained 88% of reversible capacity after 300 cycles in ambient conditions at a current density of 100 mA g super(-1).
ISSN:2040-3364
2040-3372
DOI:10.1039/c3nr01128c