Development of electrocatalysts and membrane electrode assembly for energy conversion and storage
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AI plain-English summaryA new type of membrane splits water into acid and base on demand, using only an electric field and a catalyst layer sandwiched between two charged polymer sheets. Bipolar membranes (BPMs) already exist, but they are inefficient and degrade quickly. The problem is that the catalyst layer—which drives water molecules to split into hydrogen and hydroxide ions—does not integrate well with the surrounding membranes, slowing reactions and wasting energy. This PhD project will design and test new materials for both the membranes and the catalyst layer, aiming to make the entire assembly faster, more stable, and more conductive. If successful, these improved BPMs could make several industrial processes cheaper and more practical. They could be used in electrodialysis to recover acids and bases from waste streams, in electrolysers to produce hydrogen fuel more efficiently, and in novel acid-base flow batteries for grid-scale energy storage. The work is applied and directly targets device performance, with collaboration from industrial partners who would manufacture and test the membranes. The project does not claim to solve climate change on its own, but it addresses a specific engineering bottleneck that currently limits a family of clean-energy technologies.
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