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Three-Dimensional Pinecone-like Binder-Free Pt–TiO(2) Nanorods on Ti Mesh Structures: Synthesis, Characterization and Electroactivity towards Ethanol Oxidation

We report here the synthesis of binderless and template-less three-dimensional (3D) pinecone-shaped Pt/TiO(2)/Ti mesh structure. The TiO(2) hydrothermally synthesized onto Ti mesh is composed of a mixture of flower-like nanorods and vertically aligned bar-shaped structures, whereas Pt film grown by...

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Autores principales: Mohammadi, Naser, Abrego-Martinez, Juan Carlos, Mohamedi, Mohamed
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8955681/
https://www.ncbi.nlm.nih.gov/pubmed/35335284
http://dx.doi.org/10.3390/molecules27061921
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author Mohammadi, Naser
Abrego-Martinez, Juan Carlos
Mohamedi, Mohamed
author_facet Mohammadi, Naser
Abrego-Martinez, Juan Carlos
Mohamedi, Mohamed
author_sort Mohammadi, Naser
collection PubMed
description We report here the synthesis of binderless and template-less three-dimensional (3D) pinecone-shaped Pt/TiO(2)/Ti mesh structure. The TiO(2) hydrothermally synthesized onto Ti mesh is composed of a mixture of flower-like nanorods and vertically aligned bar-shaped structures, whereas Pt film grown by pulsed laser deposition displays a smooth surface. XRD analyses reveal an average crystallite size of 41.4 nm and 68.5 nm of the TiO(2) nanorods and Pt, respectively. In H(2)SO(4) solution, the platinum oxide formation at the Pt/TiO(2)/Ti mesh electrode is 180 mV more negative than that at the Pt/Ti mesh electrode, indicating that TiO(2) provides oxygeneous species at lower potentials, which will facilitate the removal of CO-like intermediates and accelerate an ethanol oxidation reaction (EOR). Indeed, the Pt/TiO(2)/Ti mesh catalyst exhibits current activity of 1.19 mA towards an EOR at a remarkably superior rate of 4.4 times that of the Pt/Ti mesh electrode (0.27 mA). Moreover, the presence of TiO(2) as a support to Pt delivers a steady-state current of 2.1 mA, with an increment in durability of 6.6 times compared to Pt/Ti mesh (0.32 mA). Pt is chosen here as a benchmark catalyst and we believe that with catalysts that perform better than Pt, such 3D pinecone structures can be useful for a variety of catalytic or photoelectrochemical reactions.
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spelling pubmed-89556812022-03-26 Three-Dimensional Pinecone-like Binder-Free Pt–TiO(2) Nanorods on Ti Mesh Structures: Synthesis, Characterization and Electroactivity towards Ethanol Oxidation Mohammadi, Naser Abrego-Martinez, Juan Carlos Mohamedi, Mohamed Molecules Article We report here the synthesis of binderless and template-less three-dimensional (3D) pinecone-shaped Pt/TiO(2)/Ti mesh structure. The TiO(2) hydrothermally synthesized onto Ti mesh is composed of a mixture of flower-like nanorods and vertically aligned bar-shaped structures, whereas Pt film grown by pulsed laser deposition displays a smooth surface. XRD analyses reveal an average crystallite size of 41.4 nm and 68.5 nm of the TiO(2) nanorods and Pt, respectively. In H(2)SO(4) solution, the platinum oxide formation at the Pt/TiO(2)/Ti mesh electrode is 180 mV more negative than that at the Pt/Ti mesh electrode, indicating that TiO(2) provides oxygeneous species at lower potentials, which will facilitate the removal of CO-like intermediates and accelerate an ethanol oxidation reaction (EOR). Indeed, the Pt/TiO(2)/Ti mesh catalyst exhibits current activity of 1.19 mA towards an EOR at a remarkably superior rate of 4.4 times that of the Pt/Ti mesh electrode (0.27 mA). Moreover, the presence of TiO(2) as a support to Pt delivers a steady-state current of 2.1 mA, with an increment in durability of 6.6 times compared to Pt/Ti mesh (0.32 mA). Pt is chosen here as a benchmark catalyst and we believe that with catalysts that perform better than Pt, such 3D pinecone structures can be useful for a variety of catalytic or photoelectrochemical reactions. MDPI 2022-03-16 /pmc/articles/PMC8955681/ /pubmed/35335284 http://dx.doi.org/10.3390/molecules27061921 Text en © 2022 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Mohammadi, Naser
Abrego-Martinez, Juan Carlos
Mohamedi, Mohamed
Three-Dimensional Pinecone-like Binder-Free Pt–TiO(2) Nanorods on Ti Mesh Structures: Synthesis, Characterization and Electroactivity towards Ethanol Oxidation
title Three-Dimensional Pinecone-like Binder-Free Pt–TiO(2) Nanorods on Ti Mesh Structures: Synthesis, Characterization and Electroactivity towards Ethanol Oxidation
title_full Three-Dimensional Pinecone-like Binder-Free Pt–TiO(2) Nanorods on Ti Mesh Structures: Synthesis, Characterization and Electroactivity towards Ethanol Oxidation
title_fullStr Three-Dimensional Pinecone-like Binder-Free Pt–TiO(2) Nanorods on Ti Mesh Structures: Synthesis, Characterization and Electroactivity towards Ethanol Oxidation
title_full_unstemmed Three-Dimensional Pinecone-like Binder-Free Pt–TiO(2) Nanorods on Ti Mesh Structures: Synthesis, Characterization and Electroactivity towards Ethanol Oxidation
title_short Three-Dimensional Pinecone-like Binder-Free Pt–TiO(2) Nanorods on Ti Mesh Structures: Synthesis, Characterization and Electroactivity towards Ethanol Oxidation
title_sort three-dimensional pinecone-like binder-free pt–tio(2) nanorods on ti mesh structures: synthesis, characterization and electroactivity towards ethanol oxidation
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8955681/
https://www.ncbi.nlm.nih.gov/pubmed/35335284
http://dx.doi.org/10.3390/molecules27061921
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