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Degradation Effects at the Porous Transport Layer/Catalyst Layer Interface in Polymer Electrolyte Membrane Water Electrolyzer

Liu, Chang and Shviro, Meital and Bernder, Guido and Gago, Aldo and Morawietz, Tobias and Dzara, Michael J. and Biswas, Indro and Gazdzicki, Pawel and Kang, Zhenye and Zaccarine, Sarah and Pylypenko, Svitlana and Friedrich, Kaspar Andreas and Carmo, Marcelo and Lehnert, Werner (2023) Degradation Effects at the Porous Transport Layer/Catalyst Layer Interface in Polymer Electrolyte Membrane Water Electrolyzer. Journal of The Electrochemical Society (170), 034508. Electrochemical Society, Inc.. doi: 10.1149/1945-7111/acc1a5. ISSN 0013-4651.

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Official URL: https://iopscience.iop.org/article/10.1149/1945-7111/acc1a5

Abstract

The porous transport layer (PTL)/catalyst layer (CL) interface plays a crucial role in the achievement of high performance and efficiency in polymer electrolyte membrane water electrolyzers (PEMWEs). This study investigated the effects of the PTL/CL interface on the degradation of membrane electrode assemblies (MEAs) during a 4000 h test, comparing the MEAs assembled with uncoated and Ir-coated Ti PTLs. Our results show that compared to an uncoated PTL/CL interface, an optimized interface formed when using a platinum group metal (PGM) coating, i.e., an iridium layer at the PTL/CL interface, and reduced the degradation of the MEA. The agglomeration and formation of voids and cracks could be found for both MEAs after the long-term test, but the incorporation of an Ir coating on the PTL did not affect the morphology change or oxidation of IrOx in the catalyst layer. In addition, our studies suggest that the ionomer loss and restructuring of the anodic MEA can also be reduced by Ir coating of the PTL/CL interface. Optimization of the PTL/CL interface improves the performance and durability of a PEMWE.

Item URL in elib:https://elib.dlr.de/200513/
Document Type:Article
Additional Information:Gefördert durch National Science Foundation under Grant No. 1626619 (USA)
Title:Degradation Effects at the Porous Transport Layer/Catalyst Layer Interface in Polymer Electrolyte Membrane Water Electrolyzer
Authors:
AuthorsInstitution or Email of AuthorsAuthor's ORCID iDORCID Put Code
Liu, ChangForschungzentrum JülichUNSPECIFIEDUNSPECIFIED
Shviro, MeitalForschungzentrum JülichUNSPECIFIEDUNSPECIFIED
Bernder, GuidoNational Renewable Energy Laboratory (NREL)UNSPECIFIEDUNSPECIFIED
Gago, AldoUNSPECIFIEDhttps://orcid.org/0000-0001-7000-171XUNSPECIFIED
Morawietz, TobiasUNSPECIFIEDhttps://orcid.org/0000-0003-2291-9360UNSPECIFIED
Dzara, Michael J.Colorado School of MinesUNSPECIFIEDUNSPECIFIED
Biswas, IndroUNSPECIFIEDhttps://orcid.org/0000-0002-6815-4204UNSPECIFIED
Gazdzicki, PawelUNSPECIFIEDhttps://orcid.org/0000-0002-5728-7861UNSPECIFIED
Kang, ZhenyeNational Renewable Energy Laboratory (NREL)UNSPECIFIEDUNSPECIFIED
Zaccarine, SarahColorado School of MinesUNSPECIFIEDUNSPECIFIED
Pylypenko, SvitlanaColorado School of MinesUNSPECIFIEDUNSPECIFIED
Friedrich, Kaspar AndreasUNSPECIFIEDhttps://orcid.org/0000-0002-2968-5029UNSPECIFIED
Carmo, MarceloForschungszentrum JülichUNSPECIFIEDUNSPECIFIED
Lehnert, WernerForschungszentrum JülichUNSPECIFIEDUNSPECIFIED
Date:29 March 2023
Journal or Publication Title:Journal of The Electrochemical Society
Refereed publication:Yes
Open Access:Yes
Gold Open Access:No
In SCOPUS:Yes
In ISI Web of Science:Yes
DOI:10.1149/1945-7111/acc1a5
Page Range:034508
Publisher:Electrochemical Society, Inc.
ISSN:0013-4651
Status:Published
Keywords:electrolysis, PTL, catalyst layer, degradation, iridium
HGF - Research field:Energy
HGF - Program:Materials and Technologies for the Energy Transition
HGF - Program Themes:Electrochemical Energy Storage
DLR - Research area:Energy
DLR - Program:E SP - Energy Storage
DLR - Research theme (Project):E - Electrochemical Storage
Location: Stuttgart
Institutes and Institutions:Institute of Engineering Thermodynamics > Electrochemical Energy Technology
Deposited By: Biswas, Dr. Indro
Deposited On:21 Dec 2023 13:10
Last Modified:05 Jan 2024 12:57

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