Membranes for Energy Conversion
Author:
Affiliation:
1. Department of Structure of Matter, Thermal Physics and Electronics, Faculty of Physics, Complutense University of Madrid, Plaza de Ciencias, 1, 28040 Madrid, Spain
Abstract
Publisher
MDPI AG
Subject
Filtration and Separation,Chemical Engineering (miscellaneous),Process Chemistry and Technology
Link
https://www.mdpi.com/2077-0375/13/8/735/pdf
Reference8 articles.
1. Robert, M., El Kaddouri, A., Perrin, J.-C., Mozet, K., Dillet, J., Morel, J.-Y., and Lottin, O. (2021). The Impact of Chemical-Mechanical Ex Situ Aging on PFSA Membranes for Fuel Cells. Membranes, 11.
2. Barragán, V.M. (2021). Short-Circuit Current in Polymeric Membrane-Based Thermocells: An Experimental Study. Membranes, 11.
3. Schiavone, M.M., Zhao, Y., Iwase, H., Arima-Osonoi, H., Takata, S.-I., and Radulescu, A. (2022). On the Proton Conduction Pathways in Polyelectrolyte Membranes Based on Syndiotactic-Polystyrene. Membranes, 12.
4. Nofal, M.M., Aziz, S.B., Brza, M.A., Abdullah, S.N., Dannoun, E.M.A., Hadi, J.M., Murad, A.R., Al-Saeedi, S.I., and Kadir, M.F.Z. (2022). Studies of Circuit Design, Structural, Relaxation and Potential Stability of Polymer Blend Electrolyte Membranes Based on PVA:MC Impregnated with NH4I Salt. Membranes, 12.
5. Fernández-Nieto, A., Muñoz, S., and Barragán, V.M. (2022). Alcohol Diffusion in Alkali-Metal-Doped Polymeric Membranes for Using in Alkaline Direct Alcohol Fuel Cells. Membranes, 12.
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