Block Copolymer-Based Symmetric Membranes for Direct Methanol Fuel Cells

Author:

Buonomenna Maria Giovanna1ORCID,Bae Joonwon2ORCID

Affiliation:

1. Ordine Regionale dei Chimici e Fisici della Campania, Via A. Tari 22, 80138 Naples, Italy

2. Department of Applied Chemistry, Dongduk Women’s University, Seoul 02748, Republic of Korea

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.

Publisher

MDPI AG

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