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Construction of 1T-MoS(2) quantum dots-interspersed (Bi(1−x)Fe(x))VO(4) heterostructures for electron transport and photocatalytic properties

The present study reports trigonal phase molybdenum disulfide quantum dots (MoS(2)/QDs)-decorated (Bi(1−x)Fe(x))VO(4) composite heterostructures. Initially, (Bi(1−x)Fe(x))VO(4) heterostructure nanophotocatalysts were synthesized through the hydrothermal method decorated with 1T-MoS(2)via a sonicatio...

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Autores principales: Sajid, Muhammad Munir, Zhai, Haifa, Shad, Naveed Akhtar, Shafique, Muhammad, Afzal, Amir Muhammad, Javed, Yasir, Khan, Sadaf Bashir, Amin, Nasir, Zhang, Zhengjun
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Royal Society of Chemistry 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8697336/
https://www.ncbi.nlm.nih.gov/pubmed/35423899
http://dx.doi.org/10.1039/d1ra00807b
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author Sajid, Muhammad Munir
Zhai, Haifa
Shad, Naveed Akhtar
Shafique, Muhammad
Afzal, Amir Muhammad
Javed, Yasir
Khan, Sadaf Bashir
Amin, Nasir
Zhang, Zhengjun
author_facet Sajid, Muhammad Munir
Zhai, Haifa
Shad, Naveed Akhtar
Shafique, Muhammad
Afzal, Amir Muhammad
Javed, Yasir
Khan, Sadaf Bashir
Amin, Nasir
Zhang, Zhengjun
author_sort Sajid, Muhammad Munir
collection PubMed
description The present study reports trigonal phase molybdenum disulfide quantum dots (MoS(2)/QDs)-decorated (Bi(1−x)Fe(x))VO(4) composite heterostructures. Initially, (Bi(1−x)Fe(x))VO(4) heterostructure nanophotocatalysts were synthesized through the hydrothermal method decorated with 1T-MoS(2)via a sonication process. 1T-MoS(2)@(Bi(1−x)Fe(x))VO(4) heterostructures were characterized in detail for phase purity and crystallinity using XRD and Raman spectroscopy. The Raman mode evaluation indicated monoclinic, mixed monoclinic-tetragonal and tetragonal structure development with increasing Fe concentration. For physiochemical properties, SEM, EDX, XPS, PL, EPR, UV-visible and BET techniques were applied. The optical energy band gaps of 1T-MoS(2)@(Bi(1−x)Fe(x))VO(4) heterostructures were calculated using the Tauc plot method. It shows a blue shift initially within a monoclinic structure then a red shift with an increase of Fe concentration. 1T-MoS(2)@(Bi(40)Fe(60))VO(4) with 2 wt% of 1T-MoS(2)-QDs carrying a mixed phase exhibited higher photocatalytic activity. The enhanced photocatalytic activity is attributed to the higher electron transportation from (Bi(1−x)Fe(x))VO(4) surface onto 1T-MoS(2) surface, consequently blocking the fast electron–hole recombination within (Bi(1−x)Fe(x))VO(4). 1T-MoS(2) co-catalyst interaction with (Bi(1−x)Fe(x))VO(4) enhanced the light absorption in the visible region. The close contact of small 1T-MoS(2)-QDs with (Bi(1−x)Fe(x))VO(4) develops a high degree of crystallinity, with fewer defects showing mesoporous/nanoporous structures within the heterostructures which allows more active sites. Herein, the mechanism involved in the synthesis of heterostructures and optimum conditions for photocatalytic degradation of crystal violet dye are explored and discussed thoroughly.
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spelling pubmed-86973362022-04-13 Construction of 1T-MoS(2) quantum dots-interspersed (Bi(1−x)Fe(x))VO(4) heterostructures for electron transport and photocatalytic properties Sajid, Muhammad Munir Zhai, Haifa Shad, Naveed Akhtar Shafique, Muhammad Afzal, Amir Muhammad Javed, Yasir Khan, Sadaf Bashir Amin, Nasir Zhang, Zhengjun RSC Adv Chemistry The present study reports trigonal phase molybdenum disulfide quantum dots (MoS(2)/QDs)-decorated (Bi(1−x)Fe(x))VO(4) composite heterostructures. Initially, (Bi(1−x)Fe(x))VO(4) heterostructure nanophotocatalysts were synthesized through the hydrothermal method decorated with 1T-MoS(2)via a sonication process. 1T-MoS(2)@(Bi(1−x)Fe(x))VO(4) heterostructures were characterized in detail for phase purity and crystallinity using XRD and Raman spectroscopy. The Raman mode evaluation indicated monoclinic, mixed monoclinic-tetragonal and tetragonal structure development with increasing Fe concentration. For physiochemical properties, SEM, EDX, XPS, PL, EPR, UV-visible and BET techniques were applied. The optical energy band gaps of 1T-MoS(2)@(Bi(1−x)Fe(x))VO(4) heterostructures were calculated using the Tauc plot method. It shows a blue shift initially within a monoclinic structure then a red shift with an increase of Fe concentration. 1T-MoS(2)@(Bi(40)Fe(60))VO(4) with 2 wt% of 1T-MoS(2)-QDs carrying a mixed phase exhibited higher photocatalytic activity. The enhanced photocatalytic activity is attributed to the higher electron transportation from (Bi(1−x)Fe(x))VO(4) surface onto 1T-MoS(2) surface, consequently blocking the fast electron–hole recombination within (Bi(1−x)Fe(x))VO(4). 1T-MoS(2) co-catalyst interaction with (Bi(1−x)Fe(x))VO(4) enhanced the light absorption in the visible region. The close contact of small 1T-MoS(2)-QDs with (Bi(1−x)Fe(x))VO(4) develops a high degree of crystallinity, with fewer defects showing mesoporous/nanoporous structures within the heterostructures which allows more active sites. Herein, the mechanism involved in the synthesis of heterostructures and optimum conditions for photocatalytic degradation of crystal violet dye are explored and discussed thoroughly. The Royal Society of Chemistry 2021-04-07 /pmc/articles/PMC8697336/ /pubmed/35423899 http://dx.doi.org/10.1039/d1ra00807b Text en This journal is © The Royal Society of Chemistry https://creativecommons.org/licenses/by-nc/3.0/
spellingShingle Chemistry
Sajid, Muhammad Munir
Zhai, Haifa
Shad, Naveed Akhtar
Shafique, Muhammad
Afzal, Amir Muhammad
Javed, Yasir
Khan, Sadaf Bashir
Amin, Nasir
Zhang, Zhengjun
Construction of 1T-MoS(2) quantum dots-interspersed (Bi(1−x)Fe(x))VO(4) heterostructures for electron transport and photocatalytic properties
title Construction of 1T-MoS(2) quantum dots-interspersed (Bi(1−x)Fe(x))VO(4) heterostructures for electron transport and photocatalytic properties
title_full Construction of 1T-MoS(2) quantum dots-interspersed (Bi(1−x)Fe(x))VO(4) heterostructures for electron transport and photocatalytic properties
title_fullStr Construction of 1T-MoS(2) quantum dots-interspersed (Bi(1−x)Fe(x))VO(4) heterostructures for electron transport and photocatalytic properties
title_full_unstemmed Construction of 1T-MoS(2) quantum dots-interspersed (Bi(1−x)Fe(x))VO(4) heterostructures for electron transport and photocatalytic properties
title_short Construction of 1T-MoS(2) quantum dots-interspersed (Bi(1−x)Fe(x))VO(4) heterostructures for electron transport and photocatalytic properties
title_sort construction of 1t-mos(2) quantum dots-interspersed (bi(1−x)fe(x))vo(4) heterostructures for electron transport and photocatalytic properties
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8697336/
https://www.ncbi.nlm.nih.gov/pubmed/35423899
http://dx.doi.org/10.1039/d1ra00807b
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