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Novel Ta/chitosan-doped CuO nanorods for catalytic purification of industrial wastewater and antimicrobial applications

Novel tantalum (Ta) and chitosan (CS)-doped CuO nanorods (NRs) were synthesized using a single step co-precipitation route. Different concentrations (2 and 4%) of Ta were used in fixed amounts of CS and CuO to examine their catalytic activity and antimicrobial potential. For critical analysis, synth...

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Autores principales: Ikram, M., Shahzadi, A., Hayat, S., Nabgan, W., Ul-Hamid, A., Haider, A., Noor, M., Goumri-Said, Souraya, Kanoun, Mohammed Benali, Ali, S.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Royal Society of Chemistry 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9172551/
https://www.ncbi.nlm.nih.gov/pubmed/35755577
http://dx.doi.org/10.1039/d2ra03006c
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author Ikram, M.
Shahzadi, A.
Hayat, S.
Nabgan, W.
Ul-Hamid, A.
Haider, A.
Noor, M.
Goumri-Said, Souraya
Kanoun, Mohammed Benali
Ali, S.
author_facet Ikram, M.
Shahzadi, A.
Hayat, S.
Nabgan, W.
Ul-Hamid, A.
Haider, A.
Noor, M.
Goumri-Said, Souraya
Kanoun, Mohammed Benali
Ali, S.
author_sort Ikram, M.
collection PubMed
description Novel tantalum (Ta) and chitosan (CS)-doped CuO nanorods (NRs) were synthesized using a single step co-precipitation route. Different concentrations (2 and 4%) of Ta were used in fixed amounts of CS and CuO to examine their catalytic activity and antimicrobial potential. For critical analysis, synthesized NRs were systematically examined using XRD, FTIR HRTEM, EDS, UV-Vis and PL spectroscopy. The XRD technique revealed the monoclinic structure of CuO while an increase in its crystallite size (from 15.5 to 18.5 nm) was observed upon doping. FTIR spectra were examined to study the functional groups of CuO where peaks at 514 cm(−1) and 603 cm(−1) confirmed the formation of CuO NRs. PL spectra depicted the charge transfer efficiency of the synthesized samples. The presence of dopants (Ta and CS) and constituent elements (Cu, O) was detected using EDS spectra. Additionally, the pH based catalytic performance of fabricated NRs revealed 99.7% dye degradation of toxic methylene blue (MB) dye in neutral media, 99.4% in basic media and 99.5% in acidic media along with promising antibacterial activities for Gram negative/positive bacteria, respectively upon doping of Ta (4%) into CS/CuO. The adsorption energies of CuO co-doped with CS/Ta led to the creation of stable structures that were investigated theoretically using density functional theory.
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spelling pubmed-91725512022-06-23 Novel Ta/chitosan-doped CuO nanorods for catalytic purification of industrial wastewater and antimicrobial applications Ikram, M. Shahzadi, A. Hayat, S. Nabgan, W. Ul-Hamid, A. Haider, A. Noor, M. Goumri-Said, Souraya Kanoun, Mohammed Benali Ali, S. RSC Adv Chemistry Novel tantalum (Ta) and chitosan (CS)-doped CuO nanorods (NRs) were synthesized using a single step co-precipitation route. Different concentrations (2 and 4%) of Ta were used in fixed amounts of CS and CuO to examine their catalytic activity and antimicrobial potential. For critical analysis, synthesized NRs were systematically examined using XRD, FTIR HRTEM, EDS, UV-Vis and PL spectroscopy. The XRD technique revealed the monoclinic structure of CuO while an increase in its crystallite size (from 15.5 to 18.5 nm) was observed upon doping. FTIR spectra were examined to study the functional groups of CuO where peaks at 514 cm(−1) and 603 cm(−1) confirmed the formation of CuO NRs. PL spectra depicted the charge transfer efficiency of the synthesized samples. The presence of dopants (Ta and CS) and constituent elements (Cu, O) was detected using EDS spectra. Additionally, the pH based catalytic performance of fabricated NRs revealed 99.7% dye degradation of toxic methylene blue (MB) dye in neutral media, 99.4% in basic media and 99.5% in acidic media along with promising antibacterial activities for Gram negative/positive bacteria, respectively upon doping of Ta (4%) into CS/CuO. The adsorption energies of CuO co-doped with CS/Ta led to the creation of stable structures that were investigated theoretically using density functional theory. The Royal Society of Chemistry 2022-06-07 /pmc/articles/PMC9172551/ /pubmed/35755577 http://dx.doi.org/10.1039/d2ra03006c Text en This journal is © The Royal Society of Chemistry https://creativecommons.org/licenses/by-nc/3.0/
spellingShingle Chemistry
Ikram, M.
Shahzadi, A.
Hayat, S.
Nabgan, W.
Ul-Hamid, A.
Haider, A.
Noor, M.
Goumri-Said, Souraya
Kanoun, Mohammed Benali
Ali, S.
Novel Ta/chitosan-doped CuO nanorods for catalytic purification of industrial wastewater and antimicrobial applications
title Novel Ta/chitosan-doped CuO nanorods for catalytic purification of industrial wastewater and antimicrobial applications
title_full Novel Ta/chitosan-doped CuO nanorods for catalytic purification of industrial wastewater and antimicrobial applications
title_fullStr Novel Ta/chitosan-doped CuO nanorods for catalytic purification of industrial wastewater and antimicrobial applications
title_full_unstemmed Novel Ta/chitosan-doped CuO nanorods for catalytic purification of industrial wastewater and antimicrobial applications
title_short Novel Ta/chitosan-doped CuO nanorods for catalytic purification of industrial wastewater and antimicrobial applications
title_sort novel ta/chitosan-doped cuo nanorods for catalytic purification of industrial wastewater and antimicrobial applications
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9172551/
https://www.ncbi.nlm.nih.gov/pubmed/35755577
http://dx.doi.org/10.1039/d2ra03006c
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