Hérou Servann, Kasongo-Ntumba Pauline, Periasamy Arun Prakash, King James, McVea Molly, Doszczeczko Szymon, Bushby Andy, Jorge Sobrido Ana Belen, Titirici Maria-Magdalena, Szilágyi Petra Ágota
Department of Chemical Engineering, Imperial College Road, London, SW7 2AZ, UK.
School of Engineering and Materials Science and Materials Research Institute, Queen Mary University of London, Mile End Road, London, E1 4NS, UK.
Sci Rep. 2024 Jun 24;14(1):14529. doi: 10.1038/s41598-024-64646-9.
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.
为使碱性阴离子交换膜电解槽和燃料电池成为现实的技术,必须开发出具有柔韧性、坚固性、高氢氧根离子(OH)传导率且能以低成本和可扩展方式合成的氢氧根离子传导膜。在本文中,我们利用低成本的ZIF-8金属有机框架与离子液体氢氧化四丁基铵复合,并以广泛使用的聚丙烯腈作为聚合物主链,设计出一种稳定、自支撑且柔韧的纤维垫。在不添加离子导体聚合物的情况下,我们已经在室温下获得了一种基于金属有机框架材料的具有高本征OH传导率的垫子。这种方法将有助于开发低成本且可调节的离子传导膜。