Selective growth of palladium and titanium dioxide nanostructures inside carbon nanotube membranes

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Abstract

Hybrid nanostructured arrays based on carbon nanotubes (CNT) and palladium or titanium dioxide materials have been synthesized using self-supported and silicon-supported anodized aluminum oxide (AAO) as nanoporous template. It is well demonstrated that carbon nanotubes can be grown using these membranes and hydrocarbon precursors that decompose at temperatures closer to 600°C without the use of a metal catalyst. In this process, carbonic fragments condensate to form stacked graphitic sheets, which adopt the shape of the pores, yielding from these moulds' multi-walled carbon nanotubes. After this process, the ends of the tubes remain open and accessible to other substances, whereas the outer walls are protected by the alumina. Taking advantage of this fact, we have performed the synthesis of palladium and titanium dioxide nanostructures selectively inside carbon nanotubes using these CNT-AAO membranes as nanoreactors. © 2012 Hevia et al.

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Hevia, S., Homm, P., Cortes, A., Núñez, V., Contreras, C., Vera, J., & Segura, R. (2012). Selective growth of palladium and titanium dioxide nanostructures inside carbon nanotube membranes. Nanoscale Research Letters, 7. https://doi.org/10.1186/1556-276X-7-342

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