The effect of functionalization on structure and electrical conductivity of multi-walled carbon nanotubes |
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Authors: | Lau Cher Hon Cervini Raoul Clarke Stephen R. Markovic Milena Ginic Matisons Janis G. Hawkins Stephen C. Huynh Chi P. Simon George P. |
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Affiliation: | (1) Department of Chemical Engineering, Technion-Israel Institute of Technology, Haifa, 32000, Israel |
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Abstract: | Nanosized powders of Ti-Nb oxide core-shell nanocrystals with atomic ratios of Nb/Ti = 0.11, 0.25, and 0.38 have been prepared by two preparation routes. The first route was co-precipitation, followed by␣annealing, using NbCl5 as a source of Nb. The second route was coating of pure TiO2 nanocrystals by Nb-isopropoxide in liquid medium, followed by impregnation of the Nb into the nanoparticles by annealing. Both methods yielded anatase nanocrystals with a Nb-rich shell and a core, which had much lower Nb loadings. The anatase structure solid solution (with Nb incorporated) was stable under annealing up to 760°C. The particle size remained within the nanometric scale (<50 nm) under heat-treatment up to 760°C. It has been shown that the fabricated powders can be redispersed in aqueous media by simple ultrasound treatment, resulting in nanosized dispersions. Using a variety of analytical techniques, including depth profiling of single nanocrystallites by AES combined with sputtering by Ar ions, the mechanism of the core-shell structure creation was studied. It is proposed that the formation of the core-shell structure is governed by solubility limitations in the co-precipitation route and by solubility and diffusion limitations in the coating-incorporation route. |
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Keywords: | titania anatase niobium solid solutions core-shell nanocrystallite nanosized dispersion coating wet synthesis |
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