Block Copolymer-Based Symmetric Membranes for Direct Methanol Fuel Cells

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Abstract

Like batteries, fuel cells provide an inherently clean source of energy with no adverse environmental impact during operation. The utilization of methanol as a fuel is advantageous: it has an energy density of about 6 kWh/kg, which is, much higher than that of other commercialized batteries. This review is focused on the core of a DMFC, i.e., the symmetric membrane, in particular on the block copolymers used for its preparation as an alternative to well-known Nafion. The synthesis of block copolymer ionomers based on different building block types, with special emphasis on the critical issue of methanol permeability and proton/methanol selectivity, as well as the effect of block length and crosslinking are described and discussed.

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Buonomenna, M. G., & Bae, J. (2024, August 1). Block Copolymer-Based Symmetric Membranes for Direct Methanol Fuel Cells. Symmetry. Multidisciplinary Digital Publishing Institute (MDPI). https://doi.org/10.3390/sym16081079

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