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Development of a new class of stable and adaptable free-standing fibre mats with high room-temperature hydroxide-ion conductivity.


ABSTRACT: For alkaline anion-exchange membrane electrolysers and fuel cells to become a technological reality, hydroxide-ion (OH-) conducting membranes that are flexible, robust, affording high OH- conductivity, and synthesised in a low-cost and scalable way must be developed. In this paper, we engineer a stable, self-supporting, and flexible fibre mat using a low-cost ZIF-8 metal-organic framework composited with ionic liquid tetrabutylammonium hydroxide and widely used polyacrylonitrile as polymeric backbone. We obtain mats with a high intrinsic OH- conductivity for a metal-organic framework-based material already at room temperature, without added ion-conductor polymers. This approach will contribute to the development of low-cost and tuneable ion-conducting membranes.

SUBMITTER: Herou S 

PROVIDER: S-EPMC11196687 | biostudies-literature | 2024 Jun

REPOSITORIES: biostudies-literature

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Development of a new class of stable and adaptable free-standing fibre mats with high room-temperature hydroxide-ion conductivity.

Hérou Servann S   Kasongo-Ntumba Pauline P   Periasamy Arun Prakash AP   King James J   McVea Molly M   Doszczeczko Szymon S   Bushby Andy A   Jorge Sobrido Ana Belen AB   Titirici Maria-Magdalena MM   Szilágyi Petra Ágota PÁ  

Scientific reports 20240624 1


For alkaline anion-exchange membrane electrolysers and fuel cells to become a technological reality, hydroxide-ion (OH<sup>-</sup>) conducting membranes that are flexible, robust, affording high OH<sup>-</sup> conductivity, and synthesised in a low-cost and scalable way must be developed. In this paper, we engineer a stable, self-supporting, and flexible fibre mat using a low-cost ZIF-8 metal-organic framework composited with ionic liquid tetrabutylammonium hydroxide and widely used polyacryloni  ...[more]

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