Aggarwal Kanika, Li Songlin, Nijem Sally, Dekel Dario R, Diesendruck Charles E
Schulich Faculty of Chemistry, Technion - Israel Institute of Technology, Haifa, Israel -, 3200003.
The Wolfson Department of Chemical Engineering, Technion - Israel Institute of Technology, Haifa, Israel -, 3200003.
Chemistry. 2024 Apr 5;30(20):e202400029. doi: 10.1002/chem.202400029. Epub 2024 Feb 19.
Anion-exchange membrane fuel cells and water electrolyzers have garnered significant attention in past years due to their potential role in sustainable and affordable energy conversion and storage. However, the chemical stability of the polymeric anion-exchange membranes (AEMs), the key component in these devices, currently limits their lifespan. Recently, metallopolymers have been proposed as chemically stable alternatives to organic cations, using metal centers as ion transporters. In metallopolymer AEMs, various properties such as alkaline stability, water uptake, flexibility, and performance, are determined by both the metal complex and polymer backbone. Herein we present a systematic study investigating the influence of the polymer backbone chemistry on some of these properties, focusing on the alkaline stability of low-oxophilicity gold metallopolymers. Despite the use of a common N-heterocyclic carbene ligand, upon gold metalation using the same reaction conditions, different polymer backbones end up forming different gold complexes. These findings suggest that polymer chemistry affects the metalation reaction in addition to the other properties relevant to AEM performance.
阴离子交换膜燃料电池和水电解槽在过去几年中备受关注,因为它们在可持续且经济实惠的能量转换和存储方面具有潜在作用。然而,这些装置中的关键组件——聚合物阴离子交换膜(AEMs)的化学稳定性目前限制了它们的使用寿命。最近,金属聚合物已被提议作为有机阳离子的化学稳定替代品,利用金属中心作为离子传输体。在金属聚合物AEMs中,诸如碱性稳定性、吸水性、柔韧性和性能等各种性质由金属配合物和聚合物主链共同决定。在此,我们进行了一项系统研究,考察聚合物主链化学对其中一些性质的影响,重点关注低亲氧性金金属聚合物的碱性稳定性。尽管使用了常见的N-杂环卡宾配体,但在相同反应条件下进行金金属化时,不同的聚合物主链最终形成了不同的金配合物。这些发现表明,除了与AEM性能相关的其他性质外,聚合物化学还会影响金属化反应。