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<dc:creator>Ventosa Arbaizar, Edgar</dc:creator>
<dc:creator>Chen, Peirong</dc:creator>
<dc:creator>Schuhmann, Wolfgang</dc:creator>
<dc:creator>Xia, Wei</dc:creator>
<dc:date>2012-09</dc:date>
<dc:description>A CNTs–TiO2−δ composite consisting of carbon nanotubes (CNTs) grown by catalytic chemical vapor deposition on oxygen-deficient titanium dioxide (TiO2−δ) nanoparticles was synthesized and investigated as high-rate negative electrode material for Li-ion batteries. An initial reversible capacity of 185 mAhg− 1 was obtained at C/2, with an initial irreversible loss of 15%. The composite showed a high stability upon cycling, with 92% retention of the capacity after 37 cycles, and good high rate capability, with a capacity of 102 mAhg− 1 at 10C. The performance of the CNTs–TiO2−δ composite was compared to that of pristine commercial TiO2 and to that of oxygen-deficient TiO2 − δwith the aim of identifying the source of the improvement. Both TiO2−δ and CNTs network were found to contribute to the enhanced electrochemical performance of CNTs–TiO2−δ composite.</dc:description>
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<dc:identifier>https://hdl.handle.net/10259/11367</dc:identifier>
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<dc:publisher>Elsevier</dc:publisher>
<dc:title>CNTs grown on oxygen-deficient anatase TiO2−δ as high-rate composite electrode material for lithium ion batteries</dc:title>
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