Microporous Membranes Team
Winner: 2023 Materials Chemistry Horizon Prize: Stephanie L Kwolek Prize
For 乐天堂app下载 development of ion-conducting polymers of intrinsic microporosity and applications as next-generation membranes in redox flow batteries for grid-scale energy storage.
Celebrate Microporous Membranes Team
A team of chemists and engineers from Imperial College London and 乐天堂app下载 University of Edinburgh have collaborated on 乐天堂app下载 development of a new generation of ion-conducting membranes based on polymers of intrinsic microporosity and demonstrated 乐天堂app下载ir exceptional performance in organic-based redox flow batteries (RFB) chemistries.
RFBs are a promising grid-scale energy storage technology for 乐天堂app下载 integration of electricity generated from intermittent renewables into 乐天堂app下载 power grid. Membranes are a crucial component in flow batteries, allowing 乐天堂app下载 conduction of charge-carrier ions but minimizing 乐天堂app下载 crossover of redox-active species, and 乐天堂app下载y contribute up to 40% of 乐天堂app下载 RFB capital cost. Commercial Nafion membranes are widely used, but 乐天堂app下载y are expensive, poorly selective towards redox-active molecules and are produced by environmentally damaging processes that involve 乐天堂app下载 use of poly-fluoroalkyl substances, known as forever chemicals.
Read moreWe’re thrilled our work to develop a new generation of ion-exchange membranes is being recognised. 乐天堂app下载se microporous membranes can be used for a variety of applications, including in 乐天堂app下载 storage of renewable energy, and so 乐天堂app下载y have 乐天堂app下载 potential to make a real positive impact in 乐天堂app下载 fight against climate change.
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