Double cross-linked 3D layered PBI proton exchange membranes for stable fuel cell performance above 200 °C
Phosphoric acid doped proton exchange membranes often experience performance degradation above 200 °C due to membrane creeping and phosphoric acid evaporation, migration, dehydration, and condensation. To address these issues, here we present gel-state polybenzimidazole membranes with double cross-linked three-dimensional layered structures via a polyphosphoric acid sol-gel process, enabling stable operation above 200 °C. These membranes, featuring proton-conducting cross-linking phosphate bridges and branched polybenzimidazole networks, effectively anchor and retain phosphoric acid molecules, prevent 96% of its dehydration and condensation, improve creep resistance, and maintain excellent proton conductivity stability. The resulting membrane, with superior through-plane proton conductivity of 0.348 S cm−1, delivers outstanding peak power densities ranging from 1.20–1.48 W cm−2 in fuel cells operated at 200-240 °C and a low voltage decay rate of only 0.27 mV h−1 over a 250-hour period at 220 °C, opening up possibilities for their direct integration with methanol steam reforming systems.
Top-30
Journals
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Journal of Membrane Science
9 publications, 18%
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Chemical Engineering Journal
6 publications, 12%
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Advanced Functional Materials
3 publications, 6%
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ACS Applied Polymer Materials
2 publications, 4%
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Journal of Power Sources
2 publications, 4%
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Chinese Chemical Letters
1 publication, 2%
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Journal of Colloid and Interface Science
1 publication, 2%
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Russian Chemical Reviews
1 publication, 2%
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ACS Sustainable Chemistry and Engineering
1 publication, 2%
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Journal of Electroanalytical Chemistry
1 publication, 2%
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Responsive Materials
1 publication, 2%
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Small
1 publication, 2%
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Langmuir
1 publication, 2%
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International Journal of Hydrogen Energy
1 publication, 2%
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NPG Asia Materials
1 publication, 2%
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Advanced Materials
1 publication, 2%
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Advanced Energy Materials
1 publication, 2%
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ACS ES&T Engineering
1 publication, 2%
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Dalton Transactions
1 publication, 2%
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Macromolecular Rapid Communications
1 publication, 2%
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Desalination
1 publication, 2%
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Nano Energy
1 publication, 2%
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Angewandte Chemie - International Edition
1 publication, 2%
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Journal of Materials Chemistry A
1 publication, 2%
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Angewandte Chemie
1 publication, 2%
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Advanced Science
1 publication, 2%
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Nano Letters
1 publication, 2%
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Renewable Energy
1 publication, 2%
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ACS applied materials & interfaces
1 publication, 2%
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Frontiers in Energy
1 publication, 2%
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Publishers
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25
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Elsevier
25 publications, 50%
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Wiley
11 publications, 22%
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American Chemical Society (ACS)
7 publications, 14%
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Springer Nature
2 publications, 4%
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Royal Society of Chemistry (RSC)
2 publications, 4%
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Autonomous Non-profit Organization Editorial Board of the journal Uspekhi Khimii
1 publication, 2%
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The Electrochemical Society
1 publication, 2%
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Tsinghua University Press
1 publication, 2%
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5
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25
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- We do not take into account publications without a DOI.
- Statistics recalculated weekly.