2014
DOI: 10.1016/j.cattod.2013.11.046
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Enhanced photocatalytic degradation rates at rutile TiO2 photocatalysts modified with redox co-catalysts

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Cited by 32 publications
(35 citation statements)
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“…The optimum amount (actual loading) of Cu and Fe leading to maximum photocatalytic degradation rates of a test organic pollutant (4-chlorophenol, 4-CP) was found to be very low: 0.12 wt% for Cu and 0.13 wt% for Fe. 38 For comparison, rutile TiO 2 decorated with Pt nanoparticles (optimum Pt loading of 0.34 wt%) was prepared by conventional photoreduction method [44][45][46] and served as a benchmark. After 3 hours of simulated solar irradiation ( > 320 nm) the TiO 2 (R)-Cu and TiO 2 (R)-Fe induced 4-CP degradation of 80% and 54%, respectively (Figure 2a), a significant enhancement as compared to the photoactivity of pristine rutile TiO 2 (25%).…”
Section: Photocatalytic Activitymentioning
confidence: 99%
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“…The optimum amount (actual loading) of Cu and Fe leading to maximum photocatalytic degradation rates of a test organic pollutant (4-chlorophenol, 4-CP) was found to be very low: 0.12 wt% for Cu and 0.13 wt% for Fe. 38 For comparison, rutile TiO 2 decorated with Pt nanoparticles (optimum Pt loading of 0.34 wt%) was prepared by conventional photoreduction method [44][45][46] and served as a benchmark. After 3 hours of simulated solar irradiation ( > 320 nm) the TiO 2 (R)-Cu and TiO 2 (R)-Fe induced 4-CP degradation of 80% and 54%, respectively (Figure 2a), a significant enhancement as compared to the photoactivity of pristine rutile TiO 2 (25%).…”
Section: Photocatalytic Activitymentioning
confidence: 99%
“…In a similar vein to the work of Ohno et al 28 and Hashimoto et al, [29][30][31][32] we have recently impregnated rutile TiO 2 powders with small amounts of copper(II) or iron(III) nitrate. 38 After a mild heat treatment, such surface-modified rutile photocatalysts exhibited highly enhanced activity, as compared to pristine rutile TiO 2 , in photocatalytic degradation of 4-chlorophenol (4-CP) in aqueous phase under simulated solar light irradiation ( > 320 nm). We tentatively suggested that small CuO x and FeO x clusters were formed on the TiO 2 surface after impregnation and drying, and that these small clusters allowed for improved catalysis of dioxygen reduction by photogenerated electron, leading to enhanced photoactivity.…”
Section: Introductionmentioning
confidence: 99%
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“…Many researchers at photocatalytic field are focusing [16,17]. On the other hand, efforts to investigate photocatalytic activity of rutile TiO 2 or mixedphase of these crystal phases are continued [18][19][20][21][22].…”
Section: Introductionmentioning
confidence: 99%
“…Nanocrystalline rutile TiO 2 powders were modified with small amounts of CuO x and FeO x clusters by impregnation and drying. The modified rutile samples exhibited drastically enhanced photocatalytic degradation of 4-chlorophenol under UV-vis irradiation [32]. Nakamura et al [36] showed improvement of visible light responsivity of rutile TiO 2 nanorods by site-selective modification of iron (III) ion on newly exposed faces formed by chemical etching treatment.…”
Section: Introductionmentioning
confidence: 99%