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Eco-friendly seeded Fe(3)O(4)-Ag nanocrystals: a new type of highly efficient and low cost catalyst for methylene blue reduction

Hybrid Fe(3)O(4)-Ag nanocrystals, a new type of highly efficient and reusable catalyst for methylene blue (MB) reduction, are fabricated by a novel seed deposition process. X-ray diffraction and Mössbauer spectroscopy results show that the developed iron oxides are in a pure magnetite Fe(3)O(4) phas...

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Autores principales: Liu, Y., Zhang, Y. Y., Kou, Q. W., Chen, Y., Han, D. L., Wang, D. D., Lu, Z. Y., Chen, L., Yang, J. H., Xing, S.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Royal Society of Chemistry 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9077205/
https://www.ncbi.nlm.nih.gov/pubmed/35542618
http://dx.doi.org/10.1039/c7ra11348j
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author Liu, Y.
Zhang, Y. Y.
Kou, Q. W.
Chen, Y.
Han, D. L.
Wang, D. D.
Lu, Z. Y.
Chen, L.
Yang, J. H.
Xing, S.
author_facet Liu, Y.
Zhang, Y. Y.
Kou, Q. W.
Chen, Y.
Han, D. L.
Wang, D. D.
Lu, Z. Y.
Chen, L.
Yang, J. H.
Xing, S.
author_sort Liu, Y.
collection PubMed
description Hybrid Fe(3)O(4)-Ag nanocrystals, a new type of highly efficient and reusable catalyst for methylene blue (MB) reduction, are fabricated by a novel seed deposition process. X-ray diffraction and Mössbauer spectroscopy results show that the developed iron oxides are in a pure magnetite Fe(3)O(4) phase. Upon manipulating the amount of Ag seeds capsuled on the modified surfaces of Fe(3)O(4) nanocrystals, the catalytic capacities on the reduction of MB can be precisely adjusted with a tunable fabrication cost control. The linear correlation of the reduced MB concentration versus reaction time catalyzed by our developed hybrid Fe(3)O(4)-Ag nanocrystals is coherent with pseudo first order kinetics. Importantly, with remarkable recyclability features, the hybrid Fe(3)O(4)-Ag nanocrystals can be easily separated by applying an external magnetic field. The tailored catalytic performances of the hybrid Fe(3)O(4)-Ag nanocrystals during MB reduction are attributed to the optimized dynamic electron transfer process, which dominates the electrochemical mechanism wherein the nucleophilic BH(4)(−) ions donate electrons to electrophilic organic MB through Ag seeds in a regulated amount. Such developed hybrid Fe(3)O(4)-Ag nanocrystals pave the way towards the mass production of highly efficient and low cost catalysts for methylene blue reduction.
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spelling pubmed-90772052022-05-09 Eco-friendly seeded Fe(3)O(4)-Ag nanocrystals: a new type of highly efficient and low cost catalyst for methylene blue reduction Liu, Y. Zhang, Y. Y. Kou, Q. W. Chen, Y. Han, D. L. Wang, D. D. Lu, Z. Y. Chen, L. Yang, J. H. Xing, S. RSC Adv Chemistry Hybrid Fe(3)O(4)-Ag nanocrystals, a new type of highly efficient and reusable catalyst for methylene blue (MB) reduction, are fabricated by a novel seed deposition process. X-ray diffraction and Mössbauer spectroscopy results show that the developed iron oxides are in a pure magnetite Fe(3)O(4) phase. Upon manipulating the amount of Ag seeds capsuled on the modified surfaces of Fe(3)O(4) nanocrystals, the catalytic capacities on the reduction of MB can be precisely adjusted with a tunable fabrication cost control. The linear correlation of the reduced MB concentration versus reaction time catalyzed by our developed hybrid Fe(3)O(4)-Ag nanocrystals is coherent with pseudo first order kinetics. Importantly, with remarkable recyclability features, the hybrid Fe(3)O(4)-Ag nanocrystals can be easily separated by applying an external magnetic field. The tailored catalytic performances of the hybrid Fe(3)O(4)-Ag nanocrystals during MB reduction are attributed to the optimized dynamic electron transfer process, which dominates the electrochemical mechanism wherein the nucleophilic BH(4)(−) ions donate electrons to electrophilic organic MB through Ag seeds in a regulated amount. Such developed hybrid Fe(3)O(4)-Ag nanocrystals pave the way towards the mass production of highly efficient and low cost catalysts for methylene blue reduction. The Royal Society of Chemistry 2018-01-09 /pmc/articles/PMC9077205/ /pubmed/35542618 http://dx.doi.org/10.1039/c7ra11348j Text en This journal is © The Royal Society of Chemistry https://creativecommons.org/licenses/by-nc/3.0/
spellingShingle Chemistry
Liu, Y.
Zhang, Y. Y.
Kou, Q. W.
Chen, Y.
Han, D. L.
Wang, D. D.
Lu, Z. Y.
Chen, L.
Yang, J. H.
Xing, S.
Eco-friendly seeded Fe(3)O(4)-Ag nanocrystals: a new type of highly efficient and low cost catalyst for methylene blue reduction
title Eco-friendly seeded Fe(3)O(4)-Ag nanocrystals: a new type of highly efficient and low cost catalyst for methylene blue reduction
title_full Eco-friendly seeded Fe(3)O(4)-Ag nanocrystals: a new type of highly efficient and low cost catalyst for methylene blue reduction
title_fullStr Eco-friendly seeded Fe(3)O(4)-Ag nanocrystals: a new type of highly efficient and low cost catalyst for methylene blue reduction
title_full_unstemmed Eco-friendly seeded Fe(3)O(4)-Ag nanocrystals: a new type of highly efficient and low cost catalyst for methylene blue reduction
title_short Eco-friendly seeded Fe(3)O(4)-Ag nanocrystals: a new type of highly efficient and low cost catalyst for methylene blue reduction
title_sort eco-friendly seeded fe(3)o(4)-ag nanocrystals: a new type of highly efficient and low cost catalyst for methylene blue reduction
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9077205/
https://www.ncbi.nlm.nih.gov/pubmed/35542618
http://dx.doi.org/10.1039/c7ra11348j
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