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3D hierarchical porous TiO2 films from colloidal composite fluidic deposition

Academic Article
Publication Date:
2008
abstract:
We use a "structure director" colloidal composite to fabricate porous titanium oxide films having a hierarchical pore architecture consisting of mesopores regularly distributed in the macropore shell. The colloidal composite consists of polystyrene beads coated with (ammonium lactate)titanium dihydroxide deposited by means of a fluidic technique. The pore properties and interconnections are controlled at different length scales: a macroscale, which is imposed by the polystyrene beads; a mesoscale, which is controlled by the composition and by the thermal history of the composite; a nanometer-scale, controlled by the nanocrystal sintering in air. Our approach can be extended to a wide class of water-soluble metal oxide precursors; therefore, it opens interesting perspectives for "bottom-up" nanotechnology of functional arrays and devices.
Iris type:
01.01 Articolo in rivista
List of contributors:
Biscarini, Fabio; Cavallini, Massimiliano; Dionigi, Chiara; Ruani, Giampiero
Authors of the University:
CAVALLINI MASSIMILIANO
DIONIGI CHIARA
RUANI GIAMPIERO
Handle:
https://iris.cnr.it/handle/20.500.14243/33884
Published in:
CHEMISTRY OF MATERIALS
Journal
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