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- W2393075552 abstract "The protonated titanate nanotubes were obtained by hydrothermal synthesis, and transition metal hydroxide (Co, Ni and Cu) nanoparticles were then supported on nanotubes. The transition metal oxide (Co, Ni and Cu) nanoparticles supported on TiO2-B nanotubes were obtained subsequently after calcination at 300 ℃ in argon. The obtained products were characterized by XRD, TEM and pore distribution. It is found that transition metal oxide nanoparticles with poor crystallinity are attached to the surface of the TiO2-B nanotubes. The contents of CoO, NiO and CuO in the TiO2-B nanotubes are 4.7wt%, 5.34wt% and 5.74wt% as determined from inductively coupled plasma atom emission spectroscopy(ICP), respectively. The electrochemical lithium intercalation-deintercalation of these nanotubes was studied by galvanostatic method, cyclic voltammetry (CV) and electrochemical impedance spectra(EIS). The TiO2-B nanotubes, supported with NiO and CuO nanoparticles, exhibit the optimal cycle performance and high rate discharge capability, as compared with TiO2-B nanotubes. In addition, it is also demonstrated that pseudocapacitive effect is dominant for all nanotubes and the charge transfer resistance is decreased obviously for TiO2-B nanotubes with the supporting of NiO and CuO nanoparticles, which is beneficial for the improvement of the high rate charge-discharge capability." @default.
- W2393075552 created "2016-06-24" @default.
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- W2393075552 date "2008-01-01" @default.
- W2393075552 modified "2023-09-26" @default.
- W2393075552 title "Electrochemical Lithium Storage of TiO_(2-)B Nanotubes before and after Supporting of Transition Metal Oxides" @default.
- W2393075552 hasPublicationYear "2008" @default.
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