Hierarchically Structured Metal Oxide/Silica Nanofibers by Colloid Electrospinning

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BRONZE

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Abstract

We present herein a new concept for the preparation of nanofibrous metal oxides based on the simultaneous electrospinning of metal oxide precursors and silica nanoparticles. Precursor fibers are prepared by electrospinning silica nanoparticles (20 nm in diameter) dispersed in an aqueous solution of poly(acrylic acid) and metal salts. Upon calcination in air, the poly(acrylic acid) matrix is removed, the silica nanoparticles are cemented, and nanocrystalline metal oxide particles of 4-14 nm are nucleated at the surface of the silica nanoparticles. The obtained continuous silica fibers act as a structural framework for metal oxide nanoparticles and show improved mechanical integrity compared to the neat metal oxide fibers. The hierarchically nanostructured materials are promising for catalysis applications, as demonstrated by the successful degradation of a model dye in the presence of the fibers.

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Keywords

Electrospinning, Catalysis, Ceria, Lithium cobalt oxides, Metal oxides, Nanoparticles, Electrospinning, Rotation, Macromolecular Substances, Surface Properties, Molecular Conformation, Metal Nanoparticles, Oxides, Silicon Dioxide, Catalysis, Ceria, Materials Testing, Electrochemistry, Nanoparticles, Metal oxides, Colloids, Particle Size, Crystallization, Lithium cobalt oxides

Fields of Science

02 engineering and technology, 0210 nano-technology

Citation

Horzum, N., Muñoz-Espí, R., Glasser, G., Demir, M. M., Landfester, K., and Crespy, D. (2012). Hierarchically structured metal oxide/silica nanofibers by colloid electrospinning. ACS Applied Materials and Interfaces, 4(11), 6338-6345. doi:10.1021/am301969w

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66

Volume

4

Issue

11

Start Page

6338

End Page

6345
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