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The potentials of boron-doped (nitrogen deficient) and nitrogen-doped (boron deficient) BNNT photocatalysts for decontamination of pollutants from water bodies
This work investigates the structural, elastic, electronic, and photoabsorption properties of boron- (N-deficient) and nitrogen- (B-deficient) doped single-walled boron nitride nanotube (SWBNNT) for photocatalytic applications for the first time. All calculations of the optimized systems were perfor...
Autores principales: | , , , , , , , , |
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Formato: | Online Artículo Texto |
Lenguaje: | English |
Publicado: |
The Royal Society of Chemistry
2023
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Materias: | |
Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10410231/ https://www.ncbi.nlm.nih.gov/pubmed/37564254 http://dx.doi.org/10.1039/d3ra03838f |
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author | Itas, Yahaya Saadu Isah, Kamaluddeen Abubakar Nuhu, Awwal Hussain Razali, Razif Tata, Salisu K. A., Naseer Idris, Abubakr M. Ullah, Md. Habib Khandaker, Mayeen Uddin |
author_facet | Itas, Yahaya Saadu Isah, Kamaluddeen Abubakar Nuhu, Awwal Hussain Razali, Razif Tata, Salisu K. A., Naseer Idris, Abubakr M. Ullah, Md. Habib Khandaker, Mayeen Uddin |
author_sort | Itas, Yahaya Saadu |
collection | PubMed |
description | This work investigates the structural, elastic, electronic, and photoabsorption properties of boron- (N-deficient) and nitrogen- (B-deficient) doped single-walled boron nitride nanotube (SWBNNT) for photocatalytic applications for the first time. All calculations of the optimized systems were performed with DFT quantum simulation codes. The results of the structural analysis showed that SWBNNT is stable to both B and N dopants. It was also observed that the photodecomposition activity of the B-doped nanotube improved significantly under the condition of slight compressive stress, while it decreased for the N-doped nanotube. Therefore, N-doped SWBNNT showed poor performance under external pressure. Both B and N-doped systems could narrow the wide band gap of SWBNNT to the photocatalytic region below 3 eV, therefore this material can be used as photocatalysts in water splitting for hydrogen evolution, dye degradation, wastewater treatment, etc. Analysis of the optical properties revealed that B-doped SWBNNT absorbs more photons in the visible range than the N-doped SWBNNT and can therefore be considered as a more efficient photocatalyst. In addition, it was found that all doped nanotubes are anisotropic since the absorption in one direction of nanotube axes is worse than the other. |
format | Online Article Text |
id | pubmed-10410231 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2023 |
publisher | The Royal Society of Chemistry |
record_format | MEDLINE/PubMed |
spelling | pubmed-104102312023-08-10 The potentials of boron-doped (nitrogen deficient) and nitrogen-doped (boron deficient) BNNT photocatalysts for decontamination of pollutants from water bodies Itas, Yahaya Saadu Isah, Kamaluddeen Abubakar Nuhu, Awwal Hussain Razali, Razif Tata, Salisu K. A., Naseer Idris, Abubakr M. Ullah, Md. Habib Khandaker, Mayeen Uddin RSC Adv Chemistry This work investigates the structural, elastic, electronic, and photoabsorption properties of boron- (N-deficient) and nitrogen- (B-deficient) doped single-walled boron nitride nanotube (SWBNNT) for photocatalytic applications for the first time. All calculations of the optimized systems were performed with DFT quantum simulation codes. The results of the structural analysis showed that SWBNNT is stable to both B and N dopants. It was also observed that the photodecomposition activity of the B-doped nanotube improved significantly under the condition of slight compressive stress, while it decreased for the N-doped nanotube. Therefore, N-doped SWBNNT showed poor performance under external pressure. Both B and N-doped systems could narrow the wide band gap of SWBNNT to the photocatalytic region below 3 eV, therefore this material can be used as photocatalysts in water splitting for hydrogen evolution, dye degradation, wastewater treatment, etc. Analysis of the optical properties revealed that B-doped SWBNNT absorbs more photons in the visible range than the N-doped SWBNNT and can therefore be considered as a more efficient photocatalyst. In addition, it was found that all doped nanotubes are anisotropic since the absorption in one direction of nanotube axes is worse than the other. The Royal Society of Chemistry 2023-08-09 /pmc/articles/PMC10410231/ /pubmed/37564254 http://dx.doi.org/10.1039/d3ra03838f Text en This journal is © The Royal Society of Chemistry https://creativecommons.org/licenses/by-nc/3.0/ |
spellingShingle | Chemistry Itas, Yahaya Saadu Isah, Kamaluddeen Abubakar Nuhu, Awwal Hussain Razali, Razif Tata, Salisu K. A., Naseer Idris, Abubakr M. Ullah, Md. Habib Khandaker, Mayeen Uddin The potentials of boron-doped (nitrogen deficient) and nitrogen-doped (boron deficient) BNNT photocatalysts for decontamination of pollutants from water bodies |
title | The potentials of boron-doped (nitrogen deficient) and nitrogen-doped (boron deficient) BNNT photocatalysts for decontamination of pollutants from water bodies |
title_full | The potentials of boron-doped (nitrogen deficient) and nitrogen-doped (boron deficient) BNNT photocatalysts for decontamination of pollutants from water bodies |
title_fullStr | The potentials of boron-doped (nitrogen deficient) and nitrogen-doped (boron deficient) BNNT photocatalysts for decontamination of pollutants from water bodies |
title_full_unstemmed | The potentials of boron-doped (nitrogen deficient) and nitrogen-doped (boron deficient) BNNT photocatalysts for decontamination of pollutants from water bodies |
title_short | The potentials of boron-doped (nitrogen deficient) and nitrogen-doped (boron deficient) BNNT photocatalysts for decontamination of pollutants from water bodies |
title_sort | potentials of boron-doped (nitrogen deficient) and nitrogen-doped (boron deficient) bnnt photocatalysts for decontamination of pollutants from water bodies |
topic | Chemistry |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10410231/ https://www.ncbi.nlm.nih.gov/pubmed/37564254 http://dx.doi.org/10.1039/d3ra03838f |
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