Interplay between Chemistry and Texture in Hydrophobic TiO2 Hybrids

Organic-nano-TiO2 hybrids are successfully employed in different fields, from biomaterials to self-cleaning processes and from sensing to photovoltaics. The specific wetting properties of these materials bear relevance to any application. Here, nano-TiO2 films with a multiscale roughness, as shown b...

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Veröffentlicht in:Journal of physical chemistry. C 2011-09, Vol.115 (38), p.18649-18658
Hauptverfasser: Meroni, D, Ardizzone, S, Cappelletti, G, Ceotto, M, Ratti, M, Annunziata, R, Benaglia, M, Raimondi, L
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container_end_page 18658
container_issue 38
container_start_page 18649
container_title Journal of physical chemistry. C
container_volume 115
creator Meroni, D
Ardizzone, S
Cappelletti, G
Ceotto, M
Ratti, M
Annunziata, R
Benaglia, M
Raimondi, L
description Organic-nano-TiO2 hybrids are successfully employed in different fields, from biomaterials to self-cleaning processes and from sensing to photovoltaics. The specific wetting properties of these materials bear relevance to any application. Here, nano-TiO2 films with a multiscale roughness, as shown by AFM, are derivatized with tri- and bifunctional siloxanes, bearing either alkyl or aromatic end groups. Dynamic contact angle measurements show a marked dependence of the wettability on the siloxane nature, leading to different self-cleaning properties, as assessed by ATR-FTIR. The different behavior is rationalized on the grounds of the structure of the functionalized layer, by employing solid state 29Si CP-MAS NMR and EDX mapping. Semiempirical calculations of hybrids dipole moments in conjunction with solvent surface energy components allow us to explain the strongly different solvents wettability. This work brings attention to the importance of the hydrophobizing molecule nature and its chemical interactions for the interpretation of wettability versus surface texture.
doi_str_mv 10.1021/jp205142b
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title Interplay between Chemistry and Texture in Hydrophobic TiO2 Hybrids
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