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Cited 7 time in webofscience Cited 8 time in scopus
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Bio-inspired proton conducting phytagel derived zwitterionic complex membranes for fuel cellsopen access

Authors
Karuppasamy, K.Vikraman, DhanasekaranJang, Kyu-WonRavi, SeenuTanveer, Waqas HassanBose, RanjithThandavarayan, MaiyalaganKim, Hyun-Seok
Issue Date
10-Oct-2021
Publisher
WILEY
Keywords
mechanical stability; PEMFCs; proton transport; sulfonation; zwitterion
Citation
INTERNATIONAL JOURNAL OF ENERGY RESEARCH, v.45, no.12, pp 17120 - 17132
Pages
13
Indexed
SCIE
SCOPUS
Journal Title
INTERNATIONAL JOURNAL OF ENERGY RESEARCH
Volume
45
Number
12
Start Page
17120
End Page
17132
URI
https://scholarworks.dongguk.edu/handle/sw.dongguk/4303
DOI
10.1002/er.5386
ISSN
0363-907X
1099-114X
Abstract
This study proves synthesis of carbohydrate polymer phytagel based composite proton exchange membranes and employed for their applications in proton exchange membrane fuel cells. Phytagel was sulfonated using chlorosulfonic acid and corresponding composite membranes were prepared by loading different amounts of sulfamic acid (SA) to improve their proton conductivity. Incrementing SA into the sulfonated phytagel substantially boosted the swelling rate to a certain limit without affecting proton conductivity, or thermal and mechanical stabilities. Highest proton conductivity (1.49 x 10(-3)S cm(-1)at 353 K) was achieved for 7 wt% SA. Single cell tests on this membrane unveiled an excellent performance at 60 degrees C and 100% relative humidity (RH) compared with the other two membranes. Thus, this study offers may open new possibilities to utilize phytagel based bio-composite solid polymer electrolytes as proton exchange membranes for fuel cell applications.
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College of Engineering (Department of Electronics and Electrical Engineering)
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