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One-pot synthesis of MoS(2(1−x))Se(2x) on N-doped reduced graphene oxide: tailoring chemical and structural properties for photoenhanced hydrogen evolution reaction

In this work we designed a one-pot solvothermal synthesis of MoS(2(1−x))Se(2x) nanosheets directly grown on N-doped reduced graphene oxide (hereafter N-rGO). We optimized the synthesis conditions to control the Se : S ratio, with the aim of tailoring the optoelectronic properties of the resulting na...

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Autores principales: Mosconi, Dario, Kosmala, Tomasz, Lunardon, Marco, Neyman, Alevtina, Bar-Sadan, Maya, Agnoli, Stefano, Granozzi, Gaetano
Formato: Online Artículo Texto
Lenguaje:English
Publicado: RSC 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9419742/
https://www.ncbi.nlm.nih.gov/pubmed/36132882
http://dx.doi.org/10.1039/d0na00375a
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author Mosconi, Dario
Kosmala, Tomasz
Lunardon, Marco
Neyman, Alevtina
Bar-Sadan, Maya
Agnoli, Stefano
Granozzi, Gaetano
author_facet Mosconi, Dario
Kosmala, Tomasz
Lunardon, Marco
Neyman, Alevtina
Bar-Sadan, Maya
Agnoli, Stefano
Granozzi, Gaetano
author_sort Mosconi, Dario
collection PubMed
description In this work we designed a one-pot solvothermal synthesis of MoS(2(1−x))Se(2x) nanosheets directly grown on N-doped reduced graphene oxide (hereafter N-rGO). We optimized the synthesis conditions to control the Se : S ratio, with the aim of tailoring the optoelectronic properties of the resulting nanocomposites for their use as electro- and photoelectro-catalysts in the hydrogen evolution reaction (HER). The synthesis protocol made use of ammonium tetrathiomolybdate (ATM) as MoS(2) precursor and dimethyl diselenide (DMDSe) as selenizing agent. By optimizing growth conditions and post-annealing treatments, we produced either partially amorphous or highly crystalline chalcogen-defective electrocatalysts. All samples were tested for the HER in acidic environment, and the best performing among them, for the photoassisted HER. In low crystallinity samples, the introduction of Se is not beneficial for promoting the catalytic activity, and MoS(2)/N-rGO was the most active electrocatalyst. On the other hand, after the post-annealing treatment and the consequent crystallization of the materials, the best HER performance was obtained for the sample with x = 0.38, which also showed the highest enhancement upon light irradiation.
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spelling pubmed-94197422022-09-20 One-pot synthesis of MoS(2(1−x))Se(2x) on N-doped reduced graphene oxide: tailoring chemical and structural properties for photoenhanced hydrogen evolution reaction Mosconi, Dario Kosmala, Tomasz Lunardon, Marco Neyman, Alevtina Bar-Sadan, Maya Agnoli, Stefano Granozzi, Gaetano Nanoscale Adv Chemistry In this work we designed a one-pot solvothermal synthesis of MoS(2(1−x))Se(2x) nanosheets directly grown on N-doped reduced graphene oxide (hereafter N-rGO). We optimized the synthesis conditions to control the Se : S ratio, with the aim of tailoring the optoelectronic properties of the resulting nanocomposites for their use as electro- and photoelectro-catalysts in the hydrogen evolution reaction (HER). The synthesis protocol made use of ammonium tetrathiomolybdate (ATM) as MoS(2) precursor and dimethyl diselenide (DMDSe) as selenizing agent. By optimizing growth conditions and post-annealing treatments, we produced either partially amorphous or highly crystalline chalcogen-defective electrocatalysts. All samples were tested for the HER in acidic environment, and the best performing among them, for the photoassisted HER. In low crystallinity samples, the introduction of Se is not beneficial for promoting the catalytic activity, and MoS(2)/N-rGO was the most active electrocatalyst. On the other hand, after the post-annealing treatment and the consequent crystallization of the materials, the best HER performance was obtained for the sample with x = 0.38, which also showed the highest enhancement upon light irradiation. RSC 2020-09-02 /pmc/articles/PMC9419742/ /pubmed/36132882 http://dx.doi.org/10.1039/d0na00375a Text en This journal is © The Royal Society of Chemistry https://creativecommons.org/licenses/by-nc/3.0/
spellingShingle Chemistry
Mosconi, Dario
Kosmala, Tomasz
Lunardon, Marco
Neyman, Alevtina
Bar-Sadan, Maya
Agnoli, Stefano
Granozzi, Gaetano
One-pot synthesis of MoS(2(1−x))Se(2x) on N-doped reduced graphene oxide: tailoring chemical and structural properties for photoenhanced hydrogen evolution reaction
title One-pot synthesis of MoS(2(1−x))Se(2x) on N-doped reduced graphene oxide: tailoring chemical and structural properties for photoenhanced hydrogen evolution reaction
title_full One-pot synthesis of MoS(2(1−x))Se(2x) on N-doped reduced graphene oxide: tailoring chemical and structural properties for photoenhanced hydrogen evolution reaction
title_fullStr One-pot synthesis of MoS(2(1−x))Se(2x) on N-doped reduced graphene oxide: tailoring chemical and structural properties for photoenhanced hydrogen evolution reaction
title_full_unstemmed One-pot synthesis of MoS(2(1−x))Se(2x) on N-doped reduced graphene oxide: tailoring chemical and structural properties for photoenhanced hydrogen evolution reaction
title_short One-pot synthesis of MoS(2(1−x))Se(2x) on N-doped reduced graphene oxide: tailoring chemical and structural properties for photoenhanced hydrogen evolution reaction
title_sort one-pot synthesis of mos(2(1−x))se(2x) on n-doped reduced graphene oxide: tailoring chemical and structural properties for photoenhanced hydrogen evolution reaction
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9419742/
https://www.ncbi.nlm.nih.gov/pubmed/36132882
http://dx.doi.org/10.1039/d0na00375a
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