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Hierarchical CdMoO(4) nanowire–graphene composite for photocatalytic hydrogen generation under natural sunlight

Herein, a facile in situ solvothermal technique for the synthesis of a CdMoO(4)/graphene composite photocatalyst is reported. Graphene oxide (GO) was synthesised by an improved Hummers' method and was further used for the in situ synthesis of graphene via GO reduction and the formation of a CdM...

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Autores principales: Kadam, Sunil R., Panmand, Rajendra P., Tekale, Shashikant, Khore, Supriya, Terashima, Chiaki, Gosavi, Suresh W., Fujishima, Akira, Kale, Bharat B.
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/PMC9079877/
https://www.ncbi.nlm.nih.gov/pubmed/35539346
http://dx.doi.org/10.1039/c8ra01557k
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author Kadam, Sunil R.
Panmand, Rajendra P.
Tekale, Shashikant
Khore, Supriya
Terashima, Chiaki
Gosavi, Suresh W.
Fujishima, Akira
Kale, Bharat B.
author_facet Kadam, Sunil R.
Panmand, Rajendra P.
Tekale, Shashikant
Khore, Supriya
Terashima, Chiaki
Gosavi, Suresh W.
Fujishima, Akira
Kale, Bharat B.
author_sort Kadam, Sunil R.
collection PubMed
description Herein, a facile in situ solvothermal technique for the synthesis of a CdMoO(4)/graphene composite photocatalyst is reported. Graphene oxide (GO) was synthesised by an improved Hummers' method and was further used for the in situ synthesis of graphene via GO reduction and the formation of a CdMoO(4) nanowire/graphene composite. The structural phase formation of tetragonal CdMoO(4) was confirmed from X-ray diffraction measurements. The small nanoparticle assembled nanowires, prismatic microsphere morphology and crystalline nature of the synthesized material were investigated using field emission scanning electron microscopy (FESEM) and transmission electron microscopy (TEM). Due to its unique morphology and stability, the CdMoO(4)/graphene composite was used as a photocatalyst for H(2)O splitting. In comparison to pristine CdMoO(4), the CdMoO(4)/graphene composite showed the best hydrogen evolution rate, i.e. 3624 μmole h(−1) g(−1), with an apparent quantum yield of 30.5%. The CdMoO(4)/graphene composite has a higher photocatalytic activity due to the inhibition of charge carrier recombination. H(2) production measurements showed that the ternary semiconductor/graphene composite has enhanced photocatalytic activity for H(2) generation.
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spelling pubmed-90798772022-05-09 Hierarchical CdMoO(4) nanowire–graphene composite for photocatalytic hydrogen generation under natural sunlight Kadam, Sunil R. Panmand, Rajendra P. Tekale, Shashikant Khore, Supriya Terashima, Chiaki Gosavi, Suresh W. Fujishima, Akira Kale, Bharat B. RSC Adv Chemistry Herein, a facile in situ solvothermal technique for the synthesis of a CdMoO(4)/graphene composite photocatalyst is reported. Graphene oxide (GO) was synthesised by an improved Hummers' method and was further used for the in situ synthesis of graphene via GO reduction and the formation of a CdMoO(4) nanowire/graphene composite. The structural phase formation of tetragonal CdMoO(4) was confirmed from X-ray diffraction measurements. The small nanoparticle assembled nanowires, prismatic microsphere morphology and crystalline nature of the synthesized material were investigated using field emission scanning electron microscopy (FESEM) and transmission electron microscopy (TEM). Due to its unique morphology and stability, the CdMoO(4)/graphene composite was used as a photocatalyst for H(2)O splitting. In comparison to pristine CdMoO(4), the CdMoO(4)/graphene composite showed the best hydrogen evolution rate, i.e. 3624 μmole h(−1) g(−1), with an apparent quantum yield of 30.5%. The CdMoO(4)/graphene composite has a higher photocatalytic activity due to the inhibition of charge carrier recombination. H(2) production measurements showed that the ternary semiconductor/graphene composite has enhanced photocatalytic activity for H(2) generation. The Royal Society of Chemistry 2018-04-12 /pmc/articles/PMC9079877/ /pubmed/35539346 http://dx.doi.org/10.1039/c8ra01557k Text en This journal is © The Royal Society of Chemistry https://creativecommons.org/licenses/by/3.0/
spellingShingle Chemistry
Kadam, Sunil R.
Panmand, Rajendra P.
Tekale, Shashikant
Khore, Supriya
Terashima, Chiaki
Gosavi, Suresh W.
Fujishima, Akira
Kale, Bharat B.
Hierarchical CdMoO(4) nanowire–graphene composite for photocatalytic hydrogen generation under natural sunlight
title Hierarchical CdMoO(4) nanowire–graphene composite for photocatalytic hydrogen generation under natural sunlight
title_full Hierarchical CdMoO(4) nanowire–graphene composite for photocatalytic hydrogen generation under natural sunlight
title_fullStr Hierarchical CdMoO(4) nanowire–graphene composite for photocatalytic hydrogen generation under natural sunlight
title_full_unstemmed Hierarchical CdMoO(4) nanowire–graphene composite for photocatalytic hydrogen generation under natural sunlight
title_short Hierarchical CdMoO(4) nanowire–graphene composite for photocatalytic hydrogen generation under natural sunlight
title_sort hierarchical cdmoo(4) nanowire–graphene composite for photocatalytic hydrogen generation under natural sunlight
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9079877/
https://www.ncbi.nlm.nih.gov/pubmed/35539346
http://dx.doi.org/10.1039/c8ra01557k
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