4.6 Article

Sol-gel and impregnated prepared silver TiO2 semiconductors as photocatalysts for the UV decomposition of 2,4-d: a comparative study of the preparation method

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SPRINGER
DOI: 10.1007/s10971-011-2462-3

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2-4-D herbicide photodegradation; Silver nanoparticles; 2,4-dichlorophenoxiacetic acid; Slurry UV photodegradation; Silver acetylacetonate precursor

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UV-photocatalytic oxidation of 2,4-dichlorophenoxyacetic acid (2,4-d) was studied on Silver-TiO2 semiconductors prepared by co-gelling silver acetylacetonate and titanium butoxide (TiO2-Ag) or by incipient impregnation with silver acetylacetonate (0.5 wt% Ag) of bare TiO2 sol-gel and TiO2-P25 supports. The comparative study shows that only a slight modification on the specific surface area was obtained on the TiO2-Ag sample (60 m(2)/g) as compared to the TiO2 sol-gel bare support (65 m(2)/g). XRD patterns of the samples show anatase as the crystalline phase present in the sol-gel TiO2 preparations. By means of HRTEM and HAADF-STEM electron microscopy techniques, silver nanoparticles (< 12.0 nm) were identified which are very small to be detected by XRD. The photocatalytic oxidation of the herbicide 2,4-d used as a model of contaminant show for the kinetic parameter t(1/2) values of 45 min for the TiO2-Ag sample, while for the impregnated Ag/TiO2 and Ag/P25 nanomaterials t(1/2) was 124 and 66 min, respectively. The higher photoactivity of the TiO2-Ag photocatalyst is attributed to a combined effect of the silver nanoparticles in interaction with the titania semiconductor.

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