首页|Corrosion Investigation by Scanning Electrochemical Microscopy of AISI446 and Ti-Coated AISI446 Ferritic Stainless Steel as Potential Material for Bipolar Plate in PEMWE

Corrosion Investigation by Scanning Electrochemical Microscopy of AISI446 and Ti-Coated AISI446 Ferritic Stainless Steel as Potential Material for Bipolar Plate in PEMWE

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The components of proton exchange membrane water electrolysers frequently experience corrosion issues,especially at high anodic polarization,that restrict the use of more affordable alternatives to titanium.Here,we investigate localized corrosion processes of bare and Ti-coated AISI 446 ferritic stainless steel under anodic polarization by scanning electrochemical microscopy(SECM)in sodium sulphate and potassium chloride solutions.SECM approach curves and area scans measured at open-circuit potential(OCP)of the samples in the feedback mode using a redox mediator evidence a negative feedback effect caused by the surface passive film.For the anodic polarization of the sample,the substrate generation-tip collection mode enables to observe local generation of iron(Ⅱ)ions,as well as formation of molecular oxygen.For the uncoated AISI 446 sample,localized corrosion is detected in sodium sulphate solution simultaneously with oxygen formation at anodic potentials of 1.0 V vs.Ag/AgCl,whereas significant pitting corrosion is observed even at 0.2 V vs.Ag/AgCl in potassium chloride solution.The Ti-coated AISI 446 sample reveals enhanced corrosion resistance in both test solutions,without any evidence of iron(Ⅱ)ions generation at anodic potentials of 1.2 V vs.Ag/AgCl,where only oxygen formation is observed.

Ferritic stainless steelCorrosionTi coatingScanning electrochemical microscopy(SECM)Magnetron sputteringProton exchange membrane water electrolysis(PEMWE)

Andrea Kellenberger、Nicolae Vaszilcsin、Mircea Laurentiu Dan、Ion Mitelea、Alexandru Adrian Geana、Sigrid Laedre、Corneliu M.Craciunescu

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Faculty of Industrial Chemistry and Environmental Engineering,Politehnica University Timisoara,Piata Victoriei 2,300006 Timisoara,Romania

Faculty of Mechanical Engineering,Politehnica University Timisoara,Piata Victoriei 2,300006 Timisoara,Romania

SINTEF Industry,7465 Trondheim,Norway

EEA Grants2014-2021EEA Grants2014-2021

2/2019 CoDe-PEMEEA RO-NO-2018-0502

2024

金属学报(英文版)
中国金属学会

金属学报(英文版)

CSTPCD
影响因子:0.77
ISSN:1006-7191
年,卷(期):2024.37(4)
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