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Proton Conductive Channel Optimization in Methanol Resistive Hybrid Hyperbranched Polyamide Proton Exchange Membrane.

Authors :
Liying Ma
Jing Li
Jie Xiong
Guoxiao Xu
Zhao Liu
Weiwei Cai
Source :
Polymers (20734360). Dec2017, Vol. 9 Issue 12, preceding p703. 23p.
Publication Year :
2017

Abstract

Based on a previously developed polyamide proton conductive macromolecule, the nano-scale structure of the self-assembled proton conductive channels (PCCs) is adjusted via enlarging the nano-scale pore size within the macromolecules. Hyperbranched polyamide macromolecules with different size are synthesized from different monomers to tune the nano-scale pore size within the macromolecules, and a series of hybrid membranes are prepared from these two micromoles to optimize the PCC structure in the proton exchange membrane. The optimized membrane exhibits methanol permeability low to 2.2 × 10-7 cm2/s, while the proton conductivity of the hybrid membrane can reach 0.25 S/cm at 80 °C, which was much higher than the value of the Nafion 117 membrane (0.192 S/cm). By considering the mechanical, dimensional, and the thermal properties, the hybrid hyperbranched polyamide proton exchange membrane (PEM) exhibits promising application potential in direct methanol fuel cells (DMFC). [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
20734360
Volume :
9
Issue :
12
Database :
Academic Search Index
Journal :
Polymers (20734360)
Publication Type :
Academic Journal
Accession number :
126957968
Full Text :
https://doi.org/10.3390/polym9120703