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Through-plane conductivity of anion exchange membranes at sub-freezing temperatures - hydroxide vs (bi-)carbonate ions
Schwämmlein, J. N., Pham, N. L. T., Mittermeier, T., Egawa, M., Bonorand, L., & Gasteiger, H. A. (2020). Through-plane conductivity of anion exchange membranes at sub-freezing temperatures - hydroxide vs (bi-)carbonate ions. Journal of the Electrochemical Society, 167(8), 084513 (11 pp.). https://doi.org/10.1149/1945-7111/ab8cdf
Effects of temperature and catalyst type on chemical degradation of radiation grafted membranes in PEFCs
Zhang, Z., Buchmüller, Y., Bonorand, L., Wokaun, A., Schmidt, T. J., & Gubler, L. (2015). Effects of temperature and catalyst type on chemical degradation of radiation grafted membranes in PEFCs. Fuel Cells, 15(4), 610-618. https://doi.org/10.1002/fuce.201500019
Mass spectrometry to quantify and compare the gas barrier properties of radiation grafted membranes and Nafion<sup>®</sup>
Zhang, Z., Chattot, R., Bonorand, L., Jetsrisuparb, K., Buchmüller, Y., Wokaun, A., & Gubler, L. (2014). Mass spectrometry to quantify and compare the gas barrier properties of radiation grafted membranes and Nafion®. Journal of Membrane Science, 472, 55-66. https://doi.org/10.1016/j.memsci.2014.08.020
Viscoelastic phase diagram of fluorinated and grafted polymer films and proton-exchange membranes for fuel cell applications
Leterrier, Y., Thivolle, J., Oliveira, F., Månson, J. A., Gubler, L., Ben youcef, H., … Scherer, G. (2013). Viscoelastic phase diagram of fluorinated and grafted polymer films and proton-exchange membranes for fuel cell applications. Journal of Polymer Science. Part B: Polymer Physics, 51(15), 1139-1148. https://doi.org/10.1002/polb.23309