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Preparation, filtration, and photocatalytic properties of PAN@g-C(3)N(4) fibrous membranes by electrospinning
Particulate matter and formaldehyde (HCHO) in closed indoor environments are seriously harmful to human health; hence, techniques for the improvement of air quality have attracted significant attention. PAN@g-C(3)N(4) fibrous membranes with high efficiency, low resistance, and photocatalytic activit...
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/PMC9033595/ https://www.ncbi.nlm.nih.gov/pubmed/35479234 http://dx.doi.org/10.1039/d1ra03234h |
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author | Cui, Yahui Jiang, Zhenlin Xu, Chenxue Zhu, Min Li, Weizhen Wang, Chaosheng |
author_facet | Cui, Yahui Jiang, Zhenlin Xu, Chenxue Zhu, Min Li, Weizhen Wang, Chaosheng |
author_sort | Cui, Yahui |
collection | PubMed |
description | Particulate matter and formaldehyde (HCHO) in closed indoor environments are seriously harmful to human health; hence, techniques for the improvement of air quality have attracted significant attention. PAN@g-C(3)N(4) fibrous membranes with high efficiency, low resistance, and photocatalytic activity were prepared by electrospinning with polyacrylonitrile (PAN) and graphite carbon nitride (g-C(3)N(4)), followed by the high-temperature polycondensation of melamine. The addition of g-C(3)N(4) to the nanofibrous membrane effectively improved the filtration efficiency of PM2.5. When the amount of added g-C(3)N(4) was 3 wt%, the filtration efficiency of PM2.5 was 99.76 ± 0.3%, the filtration efficiency was stable for 24 hours at a continuous high concentration, and the filtration cycle stability was good. As a photocatalytic material, g-C(3)N(4) causes the photocatalytic degradation of HCHO, and thus, significantly improves the filtration efficiency of the nanofibrous membrane to HCHO. When the amount of added g-C(3)N(4) was 3 wt%, the filtration efficiency of the nanofibrous membrane to HCHO reached 78.0 ± 1.8%. The mechanism of catalytic degradation showed that the PAN fibres first adsorbed and intercepted the HCHO molecules. Under simulated sunlight irradiation, the photogenerated holes generated by the g-C(3)N(4) nanosheets in the fibres oxidised and decomposed the adsorbed HCHO molecules. This study has broad application potential for high-efficiency filters to improve indoor air quality. |
format | Online Article Text |
id | pubmed-9033595 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2021 |
publisher | The Royal Society of Chemistry |
record_format | MEDLINE/PubMed |
spelling | pubmed-90335952022-04-26 Preparation, filtration, and photocatalytic properties of PAN@g-C(3)N(4) fibrous membranes by electrospinning Cui, Yahui Jiang, Zhenlin Xu, Chenxue Zhu, Min Li, Weizhen Wang, Chaosheng RSC Adv Chemistry Particulate matter and formaldehyde (HCHO) in closed indoor environments are seriously harmful to human health; hence, techniques for the improvement of air quality have attracted significant attention. PAN@g-C(3)N(4) fibrous membranes with high efficiency, low resistance, and photocatalytic activity were prepared by electrospinning with polyacrylonitrile (PAN) and graphite carbon nitride (g-C(3)N(4)), followed by the high-temperature polycondensation of melamine. The addition of g-C(3)N(4) to the nanofibrous membrane effectively improved the filtration efficiency of PM2.5. When the amount of added g-C(3)N(4) was 3 wt%, the filtration efficiency of PM2.5 was 99.76 ± 0.3%, the filtration efficiency was stable for 24 hours at a continuous high concentration, and the filtration cycle stability was good. As a photocatalytic material, g-C(3)N(4) causes the photocatalytic degradation of HCHO, and thus, significantly improves the filtration efficiency of the nanofibrous membrane to HCHO. When the amount of added g-C(3)N(4) was 3 wt%, the filtration efficiency of the nanofibrous membrane to HCHO reached 78.0 ± 1.8%. The mechanism of catalytic degradation showed that the PAN fibres first adsorbed and intercepted the HCHO molecules. Under simulated sunlight irradiation, the photogenerated holes generated by the g-C(3)N(4) nanosheets in the fibres oxidised and decomposed the adsorbed HCHO molecules. This study has broad application potential for high-efficiency filters to improve indoor air quality. The Royal Society of Chemistry 2021-06-01 /pmc/articles/PMC9033595/ /pubmed/35479234 http://dx.doi.org/10.1039/d1ra03234h Text en This journal is © The Royal Society of Chemistry https://creativecommons.org/licenses/by-nc/3.0/ |
spellingShingle | Chemistry Cui, Yahui Jiang, Zhenlin Xu, Chenxue Zhu, Min Li, Weizhen Wang, Chaosheng Preparation, filtration, and photocatalytic properties of PAN@g-C(3)N(4) fibrous membranes by electrospinning |
title | Preparation, filtration, and photocatalytic properties of PAN@g-C(3)N(4) fibrous membranes by electrospinning |
title_full | Preparation, filtration, and photocatalytic properties of PAN@g-C(3)N(4) fibrous membranes by electrospinning |
title_fullStr | Preparation, filtration, and photocatalytic properties of PAN@g-C(3)N(4) fibrous membranes by electrospinning |
title_full_unstemmed | Preparation, filtration, and photocatalytic properties of PAN@g-C(3)N(4) fibrous membranes by electrospinning |
title_short | Preparation, filtration, and photocatalytic properties of PAN@g-C(3)N(4) fibrous membranes by electrospinning |
title_sort | preparation, filtration, and photocatalytic properties of pan@g-c(3)n(4) fibrous membranes by electrospinning |
topic | Chemistry |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9033595/ https://www.ncbi.nlm.nih.gov/pubmed/35479234 http://dx.doi.org/10.1039/d1ra03234h |
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