Journal article

Thermally stable nanocrystalline gamma-alumina layers with highly ordered 3D mesoporosity


Authors listKuemmel, M; Grosso, D; Boissiere, U; Smarsly, B; Brezesinski, T; Albouy, PA; Amenitsch, H; Sanchez, C

Publication year2005

Pages4589-4592

JournalAngewandte Chemie International Edition

Volume number44

Issue number29

ISSN1433-7851

DOI Linkhttps://doi.org/10.1002/anie.200500037

PublisherWiley


Abstract

Feature film: Mesoporous alumina thin films synthesized with a polymeric template have more than 50% porosity, a narrow pore‐size distribution, high accessibility, and high thermal stability up to 900°C. The inorganic network is composed of sintered nanocrystalline γ‐Al2O3 particles, and the pores are ellipsoidal with a face‐centered cubic mesostructure (see image).




Citation Styles

Harvard Citation styleKuemmel, M., Grosso, D., Boissiere, U., Smarsly, B., Brezesinski, T., Albouy, P., et al. (2005) Thermally stable nanocrystalline gamma-alumina layers with highly ordered 3D mesoporosity, Angewandte Chemie International Edition, 44(29), pp. 4589-4592. https://doi.org/10.1002/anie.200500037

APA Citation styleKuemmel, M., Grosso, D., Boissiere, U., Smarsly, B., Brezesinski, T., Albouy, P., Amenitsch, H., & Sanchez, C. (2005). Thermally stable nanocrystalline gamma-alumina layers with highly ordered 3D mesoporosity. Angewandte Chemie International Edition. 44(29), 4589-4592. https://doi.org/10.1002/anie.200500037


Last updated on 2025-21-05 at 13:22