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Efficient Photocatalytic Dye Degradation and Bacterial Inactivation by Graphitic Carbon Nitride and Starch-Doped Magnesium Hydroxide Nanostructures

[Image: see text] The removal of hazardous pollutants from water is becoming an increasingly interesting topic of research considering their impact on the environment and the ecosystem. This work was carried out to synthesize graphitic carbon nitride (g-C(3)N(4)) and starch-doped magnesium hydroxide...

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Autores principales: Ikram, Muhammad, Jamal, Farzana, Haider, Ali, Dilpazir, Sobia, Shujah, Tahira, Naz, Misbah, Imran, Muhammad, Ul-Hamid, Anwar, Shahzadi, Iram, Ullah, Hassam, Nabgan, Walid, Ali, Salamat
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Chemical Society 2022
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9648148/
https://www.ncbi.nlm.nih.gov/pubmed/36385836
http://dx.doi.org/10.1021/acsomega.2c04650
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author Ikram, Muhammad
Jamal, Farzana
Haider, Ali
Dilpazir, Sobia
Shujah, Tahira
Naz, Misbah
Imran, Muhammad
Ul-Hamid, Anwar
Shahzadi, Iram
Ullah, Hassam
Nabgan, Walid
Ali, Salamat
author_facet Ikram, Muhammad
Jamal, Farzana
Haider, Ali
Dilpazir, Sobia
Shujah, Tahira
Naz, Misbah
Imran, Muhammad
Ul-Hamid, Anwar
Shahzadi, Iram
Ullah, Hassam
Nabgan, Walid
Ali, Salamat
author_sort Ikram, Muhammad
collection PubMed
description [Image: see text] The removal of hazardous pollutants from water is becoming an increasingly interesting topic of research considering their impact on the environment and the ecosystem. This work was carried out to synthesize graphitic carbon nitride (g-C(3)N(4)) and starch-doped magnesium hydroxide (g-C(3)N(4)/St-Mg(OH)(2)) nanostructures via a facile co-precipitation process. The focus of this study is to treat polluted water and bactericidal behavior with a ternary system (doping-dependent Mg(OH)(2)). Different concentrations (2 and 4 wt %) of g-C(3)N(4) were doped in a fixed amount of starch and Mg(OH)(2) to degrade methylene blue dye from an aqueous solution with bactericidal potential against Escherichia coli (E. coli) and Staphylococcus aureus (S. aureus) pathogens. The textural structures, morphological evolutions, and optical characteristics of the as-prepared samples were analyzed using advanced characterization techniques. X-ray diffraction confirmed the hexagonal phase of Mg(OH)(2) with improved crystallinity upon doping. Fourier transform infrared spectroscopy revealed Mg(OH)(2) stretching vibrations and other functional groups. UV–visible spectroscopy exhibited a red shift (bathochromic effect) in absorption spectra representing the decrease in energy band gap (E(g)). Photoluminescence patterns were recorded to study recombination of charge carriers (e(–) and h(+)). A significant enhancement in photodegradation efficiency (97.62%) and efficient bactericidal actions against E. coli (14.10 mm inhibition zone) and S. aureus (7.45 mm inhibition zone) were observed for higher doped specimen 4% g-C(3)N(4)/St-Mg(OH)(2.)
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spelling pubmed-96481482022-11-15 Efficient Photocatalytic Dye Degradation and Bacterial Inactivation by Graphitic Carbon Nitride and Starch-Doped Magnesium Hydroxide Nanostructures Ikram, Muhammad Jamal, Farzana Haider, Ali Dilpazir, Sobia Shujah, Tahira Naz, Misbah Imran, Muhammad Ul-Hamid, Anwar Shahzadi, Iram Ullah, Hassam Nabgan, Walid Ali, Salamat ACS Omega [Image: see text] The removal of hazardous pollutants from water is becoming an increasingly interesting topic of research considering their impact on the environment and the ecosystem. This work was carried out to synthesize graphitic carbon nitride (g-C(3)N(4)) and starch-doped magnesium hydroxide (g-C(3)N(4)/St-Mg(OH)(2)) nanostructures via a facile co-precipitation process. The focus of this study is to treat polluted water and bactericidal behavior with a ternary system (doping-dependent Mg(OH)(2)). Different concentrations (2 and 4 wt %) of g-C(3)N(4) were doped in a fixed amount of starch and Mg(OH)(2) to degrade methylene blue dye from an aqueous solution with bactericidal potential against Escherichia coli (E. coli) and Staphylococcus aureus (S. aureus) pathogens. The textural structures, morphological evolutions, and optical characteristics of the as-prepared samples were analyzed using advanced characterization techniques. X-ray diffraction confirmed the hexagonal phase of Mg(OH)(2) with improved crystallinity upon doping. Fourier transform infrared spectroscopy revealed Mg(OH)(2) stretching vibrations and other functional groups. UV–visible spectroscopy exhibited a red shift (bathochromic effect) in absorption spectra representing the decrease in energy band gap (E(g)). Photoluminescence patterns were recorded to study recombination of charge carriers (e(–) and h(+)). A significant enhancement in photodegradation efficiency (97.62%) and efficient bactericidal actions against E. coli (14.10 mm inhibition zone) and S. aureus (7.45 mm inhibition zone) were observed for higher doped specimen 4% g-C(3)N(4)/St-Mg(OH)(2.) American Chemical Society 2022-10-24 /pmc/articles/PMC9648148/ /pubmed/36385836 http://dx.doi.org/10.1021/acsomega.2c04650 Text en © 2022 The Authors. Published by American Chemical Society https://creativecommons.org/licenses/by-nc-nd/4.0/Permits non-commercial access and re-use, provided that author attribution and integrity are maintained; but does not permit creation of adaptations or other derivative works (https://creativecommons.org/licenses/by-nc-nd/4.0/).
spellingShingle Ikram, Muhammad
Jamal, Farzana
Haider, Ali
Dilpazir, Sobia
Shujah, Tahira
Naz, Misbah
Imran, Muhammad
Ul-Hamid, Anwar
Shahzadi, Iram
Ullah, Hassam
Nabgan, Walid
Ali, Salamat
Efficient Photocatalytic Dye Degradation and Bacterial Inactivation by Graphitic Carbon Nitride and Starch-Doped Magnesium Hydroxide Nanostructures
title Efficient Photocatalytic Dye Degradation and Bacterial Inactivation by Graphitic Carbon Nitride and Starch-Doped Magnesium Hydroxide Nanostructures
title_full Efficient Photocatalytic Dye Degradation and Bacterial Inactivation by Graphitic Carbon Nitride and Starch-Doped Magnesium Hydroxide Nanostructures
title_fullStr Efficient Photocatalytic Dye Degradation and Bacterial Inactivation by Graphitic Carbon Nitride and Starch-Doped Magnesium Hydroxide Nanostructures
title_full_unstemmed Efficient Photocatalytic Dye Degradation and Bacterial Inactivation by Graphitic Carbon Nitride and Starch-Doped Magnesium Hydroxide Nanostructures
title_short Efficient Photocatalytic Dye Degradation and Bacterial Inactivation by Graphitic Carbon Nitride and Starch-Doped Magnesium Hydroxide Nanostructures
title_sort efficient photocatalytic dye degradation and bacterial inactivation by graphitic carbon nitride and starch-doped magnesium hydroxide nanostructures
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9648148/
https://www.ncbi.nlm.nih.gov/pubmed/36385836
http://dx.doi.org/10.1021/acsomega.2c04650
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