Cargando…

Photocatalytic Water Splitting for Hydrogen Production with Novel Y(2)MSbO(7) (M = Ga, In, Gd) under Visible Light Irradiation

Novel photocatalysts Y(2)MSbO(7) (M = Ga, In, Gd) were synthesized by the solid state reaction method for the first time. A comparative study on the structural and photocatalytic properties of Y(2)MSbO(7) (M = Ga, In, Gd) was reported. The results showed that Y(2)GaSbO(7), Y(2)InSbO(7) and Y(2)GdSbO...

Descripción completa

Detalles Bibliográficos
Autores principales: Luan, Jingfei, Chen, Jianhui
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2012
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5449012/
http://dx.doi.org/10.3390/ma5112423
_version_ 1783239680273154048
author Luan, Jingfei
Chen, Jianhui
author_facet Luan, Jingfei
Chen, Jianhui
author_sort Luan, Jingfei
collection PubMed
description Novel photocatalysts Y(2)MSbO(7) (M = Ga, In, Gd) were synthesized by the solid state reaction method for the first time. A comparative study on the structural and photocatalytic properties of Y(2)MSbO(7) (M = Ga, In, Gd) was reported. The results showed that Y(2)GaSbO(7), Y(2)InSbO(7) and Y(2)GdSbO(7) crystallized with the pyrochlore-type structure, cubic crystal system, and space group Fd3m. The lattice parameter for Y(2)GaSbO(7) was 10.17981 Å. The lattice parameter for Y(2)InSbO(7) was 10.43213 Å. The lattice parameter for Y(2)GdSbO(7) was 10.50704 Å. The band gap of Y(2)GaSbO(7) was estimated to be 2.245 eV. The band gap of Y(2)InSbO(7) was 2.618 eV. The band gap of Y(2)GdSbO(7) was 2.437 eV. For the photocatalytic water-splitting reaction, H(2) or O(2) evolution was observed from pure water with Y(2)GaSbO(7), Y(2)InSbO(7) or Y(2)GdSbO(7) as catalyst under visible light irradiation. (Wavelength > 420 nm). Furthermore, H(2) and O(2) were also evolved by using Y(2)GaSbO(7), Y(2)InSbO(7) or Y(2)GdSbO(7) as a catalyst from CH(3)OH/H(2)O and AgNO(3)/H(2)O solutions, respectively, under visible light irradiation (λ > 420 nm). Y(2)GaSbO(7) showed the highest activity compared with Y(2)InSbO(7) or Y(2)GdSbO(7). At the same time, Y(2)InSbO(7) showed higher activity compared with Y(2)GdSbO(7). The photocatalytic activities were further improved under visible light irradiation with Y(2)GaSbO(7), Y(2)InSbO(7) or Y(2)GdSbO(7) being loaded by Pt, NiO or RuO(2). The effect of Pt was better than that of NiO or RuO(2) for improving the photocatalytic activity of Y(2)GaSbO(7), Y(2)InSbO(7) or Y(2)GdSbO(7).
format Online
Article
Text
id pubmed-5449012
institution National Center for Biotechnology Information
language English
publishDate 2012
publisher MDPI
record_format MEDLINE/PubMed
spelling pubmed-54490122017-07-28 Photocatalytic Water Splitting for Hydrogen Production with Novel Y(2)MSbO(7) (M = Ga, In, Gd) under Visible Light Irradiation Luan, Jingfei Chen, Jianhui Materials (Basel) Article Novel photocatalysts Y(2)MSbO(7) (M = Ga, In, Gd) were synthesized by the solid state reaction method for the first time. A comparative study on the structural and photocatalytic properties of Y(2)MSbO(7) (M = Ga, In, Gd) was reported. The results showed that Y(2)GaSbO(7), Y(2)InSbO(7) and Y(2)GdSbO(7) crystallized with the pyrochlore-type structure, cubic crystal system, and space group Fd3m. The lattice parameter for Y(2)GaSbO(7) was 10.17981 Å. The lattice parameter for Y(2)InSbO(7) was 10.43213 Å. The lattice parameter for Y(2)GdSbO(7) was 10.50704 Å. The band gap of Y(2)GaSbO(7) was estimated to be 2.245 eV. The band gap of Y(2)InSbO(7) was 2.618 eV. The band gap of Y(2)GdSbO(7) was 2.437 eV. For the photocatalytic water-splitting reaction, H(2) or O(2) evolution was observed from pure water with Y(2)GaSbO(7), Y(2)InSbO(7) or Y(2)GdSbO(7) as catalyst under visible light irradiation. (Wavelength > 420 nm). Furthermore, H(2) and O(2) were also evolved by using Y(2)GaSbO(7), Y(2)InSbO(7) or Y(2)GdSbO(7) as a catalyst from CH(3)OH/H(2)O and AgNO(3)/H(2)O solutions, respectively, under visible light irradiation (λ > 420 nm). Y(2)GaSbO(7) showed the highest activity compared with Y(2)InSbO(7) or Y(2)GdSbO(7). At the same time, Y(2)InSbO(7) showed higher activity compared with Y(2)GdSbO(7). The photocatalytic activities were further improved under visible light irradiation with Y(2)GaSbO(7), Y(2)InSbO(7) or Y(2)GdSbO(7) being loaded by Pt, NiO or RuO(2). The effect of Pt was better than that of NiO or RuO(2) for improving the photocatalytic activity of Y(2)GaSbO(7), Y(2)InSbO(7) or Y(2)GdSbO(7). MDPI 2012-11-21 /pmc/articles/PMC5449012/ http://dx.doi.org/10.3390/ma5112423 Text en © 2012 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution license (http://creativecommons.org/licenses/by/3.0/).
spellingShingle Article
Luan, Jingfei
Chen, Jianhui
Photocatalytic Water Splitting for Hydrogen Production with Novel Y(2)MSbO(7) (M = Ga, In, Gd) under Visible Light Irradiation
title Photocatalytic Water Splitting for Hydrogen Production with Novel Y(2)MSbO(7) (M = Ga, In, Gd) under Visible Light Irradiation
title_full Photocatalytic Water Splitting for Hydrogen Production with Novel Y(2)MSbO(7) (M = Ga, In, Gd) under Visible Light Irradiation
title_fullStr Photocatalytic Water Splitting for Hydrogen Production with Novel Y(2)MSbO(7) (M = Ga, In, Gd) under Visible Light Irradiation
title_full_unstemmed Photocatalytic Water Splitting for Hydrogen Production with Novel Y(2)MSbO(7) (M = Ga, In, Gd) under Visible Light Irradiation
title_short Photocatalytic Water Splitting for Hydrogen Production with Novel Y(2)MSbO(7) (M = Ga, In, Gd) under Visible Light Irradiation
title_sort photocatalytic water splitting for hydrogen production with novel y(2)msbo(7) (m = ga, in, gd) under visible light irradiation
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5449012/
http://dx.doi.org/10.3390/ma5112423
work_keys_str_mv AT luanjingfei photocatalyticwatersplittingforhydrogenproductionwithnovely2msbo7mgaingdundervisiblelightirradiation
AT chenjianhui photocatalyticwatersplittingforhydrogenproductionwithnovely2msbo7mgaingdundervisiblelightirradiation