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Au-TiO(2)/Ti Hybrid Coating as a Liquid and Gas Diffusion Layer with Improved Performance and Stability in Proton Exchange Membrane Water Electrolyzer

The liquid and gas diffusion layer is a key component of proton exchange membrane water electrolyzer (PEMWE), and its interfacial contact resistance (ICR) and corrosion resistance have a great impact on the performance and durability of PEMWE. In this work, a novel hybrid coating with Au contacts di...

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Autores principales: Liu, Gaoyang, Peng, Shanlong, Hou, Faguo, Fang, Baizeng, Wang, Xindong
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9570565/
https://www.ncbi.nlm.nih.gov/pubmed/36235180
http://dx.doi.org/10.3390/molecules27196644
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author Liu, Gaoyang
Peng, Shanlong
Hou, Faguo
Fang, Baizeng
Wang, Xindong
author_facet Liu, Gaoyang
Peng, Shanlong
Hou, Faguo
Fang, Baizeng
Wang, Xindong
author_sort Liu, Gaoyang
collection PubMed
description The liquid and gas diffusion layer is a key component of proton exchange membrane water electrolyzer (PEMWE), and its interfacial contact resistance (ICR) and corrosion resistance have a great impact on the performance and durability of PEMWE. In this work, a novel hybrid coating with Au contacts discontinuously embedded in a titanium oxidized layer was constructed on a Ti felt via facile electrochemical metallizing and followed by a pre-oxidization process. The physicochemical characterizations, such as scanning electron microscopy, energy dispersive spectrometer, and X-ray diffraction results confirmed that the distribution and morphology of the Au contacts could be regulated with the electrical pulse time, and a hybrid coating (Au-TiO(2)/Ti) was eventually achieved after the long-term stability test under anode environment. At the compaction force of 140 N cm(−2), the ICR was reduced from 19.7 mΩ cm(2) of the P-Ti to 4.2 mΩ cm(2) of the Au-TiO(2)/Ti. The corrosion current density at 1.8 V (RHE) is 0.689 μA cm(−2). Both the ICR and corrosion resistance results showed that the prepared protective coating could provide comparable ICR and corrosion resistance to a dense Au coating.
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spelling pubmed-95705652022-10-17 Au-TiO(2)/Ti Hybrid Coating as a Liquid and Gas Diffusion Layer with Improved Performance and Stability in Proton Exchange Membrane Water Electrolyzer Liu, Gaoyang Peng, Shanlong Hou, Faguo Fang, Baizeng Wang, Xindong Molecules Article The liquid and gas diffusion layer is a key component of proton exchange membrane water electrolyzer (PEMWE), and its interfacial contact resistance (ICR) and corrosion resistance have a great impact on the performance and durability of PEMWE. In this work, a novel hybrid coating with Au contacts discontinuously embedded in a titanium oxidized layer was constructed on a Ti felt via facile electrochemical metallizing and followed by a pre-oxidization process. The physicochemical characterizations, such as scanning electron microscopy, energy dispersive spectrometer, and X-ray diffraction results confirmed that the distribution and morphology of the Au contacts could be regulated with the electrical pulse time, and a hybrid coating (Au-TiO(2)/Ti) was eventually achieved after the long-term stability test under anode environment. At the compaction force of 140 N cm(−2), the ICR was reduced from 19.7 mΩ cm(2) of the P-Ti to 4.2 mΩ cm(2) of the Au-TiO(2)/Ti. The corrosion current density at 1.8 V (RHE) is 0.689 μA cm(−2). Both the ICR and corrosion resistance results showed that the prepared protective coating could provide comparable ICR and corrosion resistance to a dense Au coating. MDPI 2022-10-06 /pmc/articles/PMC9570565/ /pubmed/36235180 http://dx.doi.org/10.3390/molecules27196644 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
Liu, Gaoyang
Peng, Shanlong
Hou, Faguo
Fang, Baizeng
Wang, Xindong
Au-TiO(2)/Ti Hybrid Coating as a Liquid and Gas Diffusion Layer with Improved Performance and Stability in Proton Exchange Membrane Water Electrolyzer
title Au-TiO(2)/Ti Hybrid Coating as a Liquid and Gas Diffusion Layer with Improved Performance and Stability in Proton Exchange Membrane Water Electrolyzer
title_full Au-TiO(2)/Ti Hybrid Coating as a Liquid and Gas Diffusion Layer with Improved Performance and Stability in Proton Exchange Membrane Water Electrolyzer
title_fullStr Au-TiO(2)/Ti Hybrid Coating as a Liquid and Gas Diffusion Layer with Improved Performance and Stability in Proton Exchange Membrane Water Electrolyzer
title_full_unstemmed Au-TiO(2)/Ti Hybrid Coating as a Liquid and Gas Diffusion Layer with Improved Performance and Stability in Proton Exchange Membrane Water Electrolyzer
title_short Au-TiO(2)/Ti Hybrid Coating as a Liquid and Gas Diffusion Layer with Improved Performance and Stability in Proton Exchange Membrane Water Electrolyzer
title_sort au-tio(2)/ti hybrid coating as a liquid and gas diffusion layer with improved performance and stability in proton exchange membrane water electrolyzer
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9570565/
https://www.ncbi.nlm.nih.gov/pubmed/36235180
http://dx.doi.org/10.3390/molecules27196644
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