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Efficient photocatalytic hydrogen production over titanate/titania nanostructures modified with nickel

Authorized Users Only
2019
Authors
Dostanić, Jasmina
Loncarević, Davor
Pavlović, Vladimir
Papan, Jelena
Nedeljković, Jovan M.
Article (Published version)
Metadata
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Abstract
Nickel-modified titanate/TiO2 catalysts were prepared by deposition of nickel ions onto hydrothermally prepared titanate supports, followed by hydrogen temperature-programmed reduction. Two different nickel precursors (hydroxide and carbonate) were used to tune reducibility and to vary the crystal phase structure of the final catalysts. The precursor reducibility and functional properties of the final catalysts were investigated systematically using various characterisation techniques. The results revealed a more facile reduction of the hydroxide precursor compared to its carbonate counterpart. Moreover, it was found that the formation of the anatase phase was favoured by the use of the hydroxide precipitation agent. The photocatalytic activity towards hydrogen production of the prepared catalysts was evaluated in the presence of 2-propanol under simulated solar light irradiation. A thorough study of the photocatalytic performance of the synthesised catalysts was conducted as a functio...n of the precipitation agent used and the reduction temperature applied. The catalyst with dominant anatase crystal phase displayed the highest photocatalytic activity with a maximum H-2 production rate of 1040 mu mol h(-1) g(-1), this being more than four times higher than that of its carbonate counterpart. The catalysts with titanate structure showed similar activity, independent of the precipitation method used. The nanotubular structure was found to be the dominant factor in the stability of photocatalysts under long-run working conditions.

Keywords:
Powders: chemical preparation / Nanocomposites / Titanium dioxide (TiO2) / Solar hydrogen production
Source:
Ceramics International, 2019, 45, 15, 19447-19455
Publisher:
  • Elsevier Sci Ltd, Oxford
Funding / projects:
  • Nanostructured Functional and Composite Materials in Catalytic and Sorption Processes (RS-45001)
  • Materials of Reduced Dimensions for Efficient Light Harvesting and Energy conversion (RS-45020)
  • Directed synthesis, structure and properties of multifunctional materials (RS-172057)

DOI: 10.1016/j.ceramint.2019.06.200

ISSN: 0272-8842

WoS: 000483454200158

Scopus: 2-s2.0-85067699117
[ Google Scholar ]
7
4
URI
http://aspace.agrif.bg.ac.rs/handle/123456789/4943
Collections
  • Radovi istraživača / Researchers’ publications
Institution/Community
Poljoprivredni fakultet
TY  - JOUR
AU  - Dostanić, Jasmina
AU  - Loncarević, Davor
AU  - Pavlović, Vladimir
AU  - Papan, Jelena
AU  - Nedeljković, Jovan M.
PY  - 2019
UR  - http://aspace.agrif.bg.ac.rs/handle/123456789/4943
AB  - Nickel-modified titanate/TiO2 catalysts were prepared by deposition of nickel ions onto hydrothermally prepared titanate supports, followed by hydrogen temperature-programmed reduction. Two different nickel precursors (hydroxide and carbonate) were used to tune reducibility and to vary the crystal phase structure of the final catalysts. The precursor reducibility and functional properties of the final catalysts were investigated systematically using various characterisation techniques. The results revealed a more facile reduction of the hydroxide precursor compared to its carbonate counterpart. Moreover, it was found that the formation of the anatase phase was favoured by the use of the hydroxide precipitation agent. The photocatalytic activity towards hydrogen production of the prepared catalysts was evaluated in the presence of 2-propanol under simulated solar light irradiation. A thorough study of the photocatalytic performance of the synthesised catalysts was conducted as a function of the precipitation agent used and the reduction temperature applied. The catalyst with dominant anatase crystal phase displayed the highest photocatalytic activity with a maximum H-2 production rate of 1040 mu mol h(-1) g(-1), this being more than four times higher than that of its carbonate counterpart. The catalysts with titanate structure showed similar activity, independent of the precipitation method used. The nanotubular structure was found to be the dominant factor in the stability of photocatalysts under long-run working conditions.
PB  - Elsevier Sci Ltd, Oxford
T2  - Ceramics International
T1  - Efficient photocatalytic hydrogen production over titanate/titania nanostructures modified with nickel
EP  - 19455
IS  - 15
SP  - 19447
VL  - 45
DO  - 10.1016/j.ceramint.2019.06.200
ER  - 
@article{
author = "Dostanić, Jasmina and Loncarević, Davor and Pavlović, Vladimir and Papan, Jelena and Nedeljković, Jovan M.",
year = "2019",
abstract = "Nickel-modified titanate/TiO2 catalysts were prepared by deposition of nickel ions onto hydrothermally prepared titanate supports, followed by hydrogen temperature-programmed reduction. Two different nickel precursors (hydroxide and carbonate) were used to tune reducibility and to vary the crystal phase structure of the final catalysts. The precursor reducibility and functional properties of the final catalysts were investigated systematically using various characterisation techniques. The results revealed a more facile reduction of the hydroxide precursor compared to its carbonate counterpart. Moreover, it was found that the formation of the anatase phase was favoured by the use of the hydroxide precipitation agent. The photocatalytic activity towards hydrogen production of the prepared catalysts was evaluated in the presence of 2-propanol under simulated solar light irradiation. A thorough study of the photocatalytic performance of the synthesised catalysts was conducted as a function of the precipitation agent used and the reduction temperature applied. The catalyst with dominant anatase crystal phase displayed the highest photocatalytic activity with a maximum H-2 production rate of 1040 mu mol h(-1) g(-1), this being more than four times higher than that of its carbonate counterpart. The catalysts with titanate structure showed similar activity, independent of the precipitation method used. The nanotubular structure was found to be the dominant factor in the stability of photocatalysts under long-run working conditions.",
publisher = "Elsevier Sci Ltd, Oxford",
journal = "Ceramics International",
title = "Efficient photocatalytic hydrogen production over titanate/titania nanostructures modified with nickel",
pages = "19455-19447",
number = "15",
volume = "45",
doi = "10.1016/j.ceramint.2019.06.200"
}
Dostanić, J., Loncarević, D., Pavlović, V., Papan, J.,& Nedeljković, J. M.. (2019). Efficient photocatalytic hydrogen production over titanate/titania nanostructures modified with nickel. in Ceramics International
Elsevier Sci Ltd, Oxford., 45(15), 19447-19455.
https://doi.org/10.1016/j.ceramint.2019.06.200
Dostanić J, Loncarević D, Pavlović V, Papan J, Nedeljković JM. Efficient photocatalytic hydrogen production over titanate/titania nanostructures modified with nickel. in Ceramics International. 2019;45(15):19447-19455.
doi:10.1016/j.ceramint.2019.06.200 .
Dostanić, Jasmina, Loncarević, Davor, Pavlović, Vladimir, Papan, Jelena, Nedeljković, Jovan M., "Efficient photocatalytic hydrogen production over titanate/titania nanostructures modified with nickel" in Ceramics International, 45, no. 15 (2019):19447-19455,
https://doi.org/10.1016/j.ceramint.2019.06.200 . .

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