• Media type: E-Article
  • Title: Spatially Resolved Quantification of Ionomer Degradation in Fuel Cells by Confocal Raman Microscopy
  • Contributor: Böhm, Thomas [Author]; Moroni, Riko [Author]; Breitwieser, Matthias [Author]; Thiele, Simon [Author]; Vierrath, Severin [Author]
  • Published: Electrochemical Soc., 2019
  • Published in: Journal of the Electrochemical Society 166(7), F3044 - F3051 (2019). doi:10.1149/2.0051907jes
  • Language: English
  • DOI: https://doi.org/10.1149/2.0051907jes
  • ISSN: 1945-6859; 0096-4743; 1945-7111; 0096-4786; 0013-4651; 2002-2015; 2156-7395
  • Origination:
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  • Description: Ionomer membranes are crucial components of many electrochemical devices. In this work, confocal Raman microscopy is employed to characterize Nafion ionomers quantitatively in pristine status and after usage as a proton exchange membrane in a fuel cell. Confocal Raman microscopy allows non-destructive thickness and equivalent weight measurements of Nafion with a 95% confidence interval of ±13 g mol−1 at an equivalent weight of 1000 g mol−1, which is significantly more accurate than previously reported methods. Characterization can be performed at a spatial resolution better than 2 μm, providing insights into local membrane degradation after fuel cell operation. Membrane thinning to less than 40% of the initial thickness of Nafion NR-211 occurs after a 100 h open circuit voltage hold, accompanied by an anisotropic increase of the equivalent weight from 1035 g mol−1 to an average of 1200 g mol−1. Most pronounced increases are found close to the anode. Further, the characterization of a Nafion XL membrane shows that its microporous reinforcement is represented as increased equivalent weight with local heterogeneities within the membrane. These results show that confocal Raman microscopy is a valuable tool to investigate ionomers that are used as ion exchange membranes in electrochemical devices.
  • Access State: Open Access