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Communication Dans Un Congrès Année : 2007

Electrochemical Codeposition of Ceramic Nanocomposite Films

Résumé

A novel method for deposition of ceramic nanocomposite films has been developed. This approach allows controlling the exact composition of the deposit, e.g., Cu-TiO2, Au-SiO2 and should enable the formation of a wide variety of coatings such as graded films, catalysts etc, in a straightforward approach. Sol-gel films are traditionally deposited via spin-coating, dip-coating or spraying. We describe a single step electrochemical deposition method for the preparation of ceramic nanocomposite films in which micro and nanoparticles are embedded. It is based on the electro-assisted deposition of sol-gel thin films. According to this methodology, applying either negative or positive potentials to a conducting substrate alters the pH at the electrode surface, which catalyses the polymerisation of sol-gel monomers, leading to the deposition of the appropriate oxide films. We have applied this method for preparing thin films of metal ceramic materials, such as copper-titania and copper-silica and the introduction of different nanoparticles into sol-gel coatings. Organic nanoparticles have also been incorporated in the course of the electrodeposition.
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Dates et versions

hal-00202517 , version 1 (07-01-2008)

Identifiants

  • HAL Id : hal-00202517 , version 1

Citer

Reut Toledano, Regina Okner, Daniel Mandler. Electrochemical Codeposition of Ceramic Nanocomposite Films. ENS 2007, Dec 2007, Paris, France. pp.80-84. ⟨hal-00202517⟩
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