Hierarchically structured hybrid honeycomb films via micro to nanosized building blocks
DELEUZE, Charles
Institut pluridisciplinaire de recherche sur l'environnement et les matériaux [IPREM]
Institut pluridisciplinaire de recherche sur l'environnement et les matériaux [IPREM]
DERAIL, Christophe
Institut pluridisciplinaire de recherche sur l'environnement et les matériaux [IPREM]
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Institut pluridisciplinaire de recherche sur l'environnement et les matériaux [IPREM]
DELEUZE, Charles
Institut pluridisciplinaire de recherche sur l'environnement et les matériaux [IPREM]
Institut pluridisciplinaire de recherche sur l'environnement et les matériaux [IPREM]
DERAIL, Christophe
Institut pluridisciplinaire de recherche sur l'environnement et les matériaux [IPREM]
Institut pluridisciplinaire de recherche sur l'environnement et les matériaux [IPREM]
BILLON, Laurent
Institut pluridisciplinaire de recherche sur l'environnement et les matériaux [IPREM]
< Reduce
Institut pluridisciplinaire de recherche sur l'environnement et les matériaux [IPREM]
Language
en
Article de revue
This item was published in
Soft Matter. 2012, vol. 8, n° 33, p. 8559-8562
Royal Society of Chemistry
English Abstract
Metal oxide nanoparticles were chemically modified by surface initiated polymerization to core@shell building blocks (CSBBs). These CSBBs were then self-assembled using the bottom up breath figure (BF) method to design ...Read more >
Metal oxide nanoparticles were chemically modified by surface initiated polymerization to core@shell building blocks (CSBBs). These CSBBs were then self-assembled using the bottom up breath figure (BF) method to design honeycomb (HC) porous hybrid films exhibiting hexagonal pore arrays. Depending on the nature, the size and the shape of the building blocks, honeycomb hybrid films with tunable pore sizes can be achieved.Read less <
English Keywords
Nanoparticles
Oxides
Metals
Surface
Polymerization
Core@shell
Origin
Hal imported