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Photoreduction properties of novel Z-scheme structured Sr(0.8)La(0.2)(Ti(1−δ)(4+)Ti(δ)(3+))O(3)/Bi(2)MoO(6) composites for the removal of Cr(vi)
Novel Z-scheme structured Sr(0.8)La(0.2)(Ti(1−δ)(4+)Ti(δ)(3+))O(3)/Bi(2)MoO(6) (LSTBM) composites were prepared via a facile two-step solvothermal method. Several characterization techniques were employed to investigate the phases, microstructures, compositions, valence states, oxygen vacancies, sur...
Autores principales: | , , , , , , , , , |
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Formato: | Online Artículo Texto |
Lenguaje: | English |
Publicado: |
The Royal Society of Chemistry
2021
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Materias: | |
Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8697671/ https://www.ncbi.nlm.nih.gov/pubmed/35423932 http://dx.doi.org/10.1039/d1ra01466h |
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author | Liu, Bin Fan, Zhili Zhai, Wangjian He, Junfeng Wang, Shaofeng Chen, Fuming Wang, Yinzhen Li, Wei Hou, Xianhua He, Qinyu |
author_facet | Liu, Bin Fan, Zhili Zhai, Wangjian He, Junfeng Wang, Shaofeng Chen, Fuming Wang, Yinzhen Li, Wei Hou, Xianhua He, Qinyu |
author_sort | Liu, Bin |
collection | PubMed |
description | Novel Z-scheme structured Sr(0.8)La(0.2)(Ti(1−δ)(4+)Ti(δ)(3+))O(3)/Bi(2)MoO(6) (LSTBM) composites were prepared via a facile two-step solvothermal method. Several characterization techniques were employed to investigate the phases, microstructures, compositions, valence states, oxygen vacancies, surface oxygen absorption, energy band structures and lifetime of photoproduced carriers. It was found that the lifetime and transfer of the photoproduced carriers of LSTBM were better than those of Bi(2)MoO(6) (BMO) and Sr(0.8)La(0.2)(Ti(1−δ)(4+)Ti(δ)(3+))O(3) (LSTO). The LSTBM with a molar ratio of BMO/(LSTO + BMO) = 0.07 (denoted as LSTBM7) showed 1.9 and 3.1 times removal rates than those for BMO and LSTO, respectively. Importantly, the built-in electric field in the heterojunction of LSTBM and O(v)-s, especially in O(v)-s on the higher-Fermi-level side of the heterojunction, had co-played roles in prolonging the lifetime and improving the transfer of photogenerated carriers. The photoproduced e(−) played a dominant role in reducing Cr(vi) to Cr(iii) and the produced Cr(iii) tends to form Cr(OH)(3) and adsorb onto the surface of the photocatalyst to decrease the nucleation energy. The possible reduction route for Cr(vi) to Cr(iii) over LSTBM7 was figured out. This study implies that inducing O(v)-s on the higher-Fermi-level side of the Z-scheme heterojunction is a more effective route for separating the photogenerated electrons and holes and improving the transfer of photogenerated carriers. |
format | Online Article Text |
id | pubmed-8697671 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2021 |
publisher | The Royal Society of Chemistry |
record_format | MEDLINE/PubMed |
spelling | pubmed-86976712022-04-13 Photoreduction properties of novel Z-scheme structured Sr(0.8)La(0.2)(Ti(1−δ)(4+)Ti(δ)(3+))O(3)/Bi(2)MoO(6) composites for the removal of Cr(vi) Liu, Bin Fan, Zhili Zhai, Wangjian He, Junfeng Wang, Shaofeng Chen, Fuming Wang, Yinzhen Li, Wei Hou, Xianhua He, Qinyu RSC Adv Chemistry Novel Z-scheme structured Sr(0.8)La(0.2)(Ti(1−δ)(4+)Ti(δ)(3+))O(3)/Bi(2)MoO(6) (LSTBM) composites were prepared via a facile two-step solvothermal method. Several characterization techniques were employed to investigate the phases, microstructures, compositions, valence states, oxygen vacancies, surface oxygen absorption, energy band structures and lifetime of photoproduced carriers. It was found that the lifetime and transfer of the photoproduced carriers of LSTBM were better than those of Bi(2)MoO(6) (BMO) and Sr(0.8)La(0.2)(Ti(1−δ)(4+)Ti(δ)(3+))O(3) (LSTO). The LSTBM with a molar ratio of BMO/(LSTO + BMO) = 0.07 (denoted as LSTBM7) showed 1.9 and 3.1 times removal rates than those for BMO and LSTO, respectively. Importantly, the built-in electric field in the heterojunction of LSTBM and O(v)-s, especially in O(v)-s on the higher-Fermi-level side of the heterojunction, had co-played roles in prolonging the lifetime and improving the transfer of photogenerated carriers. The photoproduced e(−) played a dominant role in reducing Cr(vi) to Cr(iii) and the produced Cr(iii) tends to form Cr(OH)(3) and adsorb onto the surface of the photocatalyst to decrease the nucleation energy. The possible reduction route for Cr(vi) to Cr(iii) over LSTBM7 was figured out. This study implies that inducing O(v)-s on the higher-Fermi-level side of the Z-scheme heterojunction is a more effective route for separating the photogenerated electrons and holes and improving the transfer of photogenerated carriers. The Royal Society of Chemistry 2021-04-16 /pmc/articles/PMC8697671/ /pubmed/35423932 http://dx.doi.org/10.1039/d1ra01466h Text en This journal is © The Royal Society of Chemistry https://creativecommons.org/licenses/by-nc/3.0/ |
spellingShingle | Chemistry Liu, Bin Fan, Zhili Zhai, Wangjian He, Junfeng Wang, Shaofeng Chen, Fuming Wang, Yinzhen Li, Wei Hou, Xianhua He, Qinyu Photoreduction properties of novel Z-scheme structured Sr(0.8)La(0.2)(Ti(1−δ)(4+)Ti(δ)(3+))O(3)/Bi(2)MoO(6) composites for the removal of Cr(vi) |
title | Photoreduction properties of novel Z-scheme structured Sr(0.8)La(0.2)(Ti(1−δ)(4+)Ti(δ)(3+))O(3)/Bi(2)MoO(6) composites for the removal of Cr(vi) |
title_full | Photoreduction properties of novel Z-scheme structured Sr(0.8)La(0.2)(Ti(1−δ)(4+)Ti(δ)(3+))O(3)/Bi(2)MoO(6) composites for the removal of Cr(vi) |
title_fullStr | Photoreduction properties of novel Z-scheme structured Sr(0.8)La(0.2)(Ti(1−δ)(4+)Ti(δ)(3+))O(3)/Bi(2)MoO(6) composites for the removal of Cr(vi) |
title_full_unstemmed | Photoreduction properties of novel Z-scheme structured Sr(0.8)La(0.2)(Ti(1−δ)(4+)Ti(δ)(3+))O(3)/Bi(2)MoO(6) composites for the removal of Cr(vi) |
title_short | Photoreduction properties of novel Z-scheme structured Sr(0.8)La(0.2)(Ti(1−δ)(4+)Ti(δ)(3+))O(3)/Bi(2)MoO(6) composites for the removal of Cr(vi) |
title_sort | photoreduction properties of novel z-scheme structured sr(0.8)la(0.2)(ti(1−δ)(4+)ti(δ)(3+))o(3)/bi(2)moo(6) composites for the removal of cr(vi) |
topic | Chemistry |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8697671/ https://www.ncbi.nlm.nih.gov/pubmed/35423932 http://dx.doi.org/10.1039/d1ra01466h |
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