2007
DOI: 10.1016/j.apcatb.2007.05.005
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Thioacetamide and thiourea impact on visible light activity of TiO2

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Cited by 58 publications
(33 citation statements)
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“…Five distinct components were individualised: the C1s(1), C1s(2), C1s(3) and C1s(4) contributions which are associated to the same forms of carbon in the carbon dioxide plasma treated PET, and a new component shifted by 1.3 eV towards low binding energies in comparison to the C1s(1) peak, situated at 283.7 eV. This new peak was located at a binding energy higher than the one corresponding to zinc carbide species (Zn-C) [56][57][58]. The fitting parameters of the C1s envelopes are presented in Table 6.…”
Section: Characterisation Of the Zinc Oxide/pet Interfacementioning
confidence: 89%
“…Five distinct components were individualised: the C1s(1), C1s(2), C1s(3) and C1s(4) contributions which are associated to the same forms of carbon in the carbon dioxide plasma treated PET, and a new component shifted by 1.3 eV towards low binding energies in comparison to the C1s(1) peak, situated at 283.7 eV. This new peak was located at a binding energy higher than the one corresponding to zinc carbide species (Zn-C) [56][57][58]. The fitting parameters of the C1s envelopes are presented in Table 6.…”
Section: Characterisation Of the Zinc Oxide/pet Interfacementioning
confidence: 89%
“…TAA is used as a replacement for hydrogen sulfide in qualitative analyses and in hospital practice, as an accelerator in rubber vulcanization, as a reductant additive in the leather, textile and paper industries, generally having a similar role to thiourea [1][2][3]. The most important recent technical applications and research studies concerning TAA use now, also draw attention to the usefulness of TAA in the preparation of photocatalytic nanocomposites, mesoporous nanomaterials and metal chalcogenide thin films [6][7][8][9]. The widespread uses of TAA are unavoidably accompanied by its toxicity and a number of ecotoxic effects in environmental pollution can result from TAA manipulation and its consequent presence in waste waters.…”
Section: Introductionmentioning
confidence: 99%
“…The limitation in its application, resulting from low quantum yield (fast recombination of charge carriers: e − /h + ) and necessity to use UV irradiation, may be overcome since modified titania powders often possess higher level of activity and ability of working under visiblelight irradiation. A huge variety of organic [4][5][6][7] and inorganic compounds [8][9][10] have been examined as dopants or surface modifiers. Among them, noble-metals particles have attracted attention, since they may enhance the transfer of photogenerated electrons prolonging charge carriers lifetime [11][12][13][14][15][16].…”
Section: Introductionmentioning
confidence: 99%