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Rational Synthesis of Metallo-Cations Toward Redox- and Alkaline-Stable Metallo-Polyelectrolytes

机译:金属阳离子对氧化还原和碱稳定的金属聚合物的合理合成

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摘要

Cations are crucial components in emerging functional polyelectrolytes for a myriad of applications. Rapid development in this area necessitates the exploration of new cations with advanced properties. Herein we describe a combination of computational and experimental design of cobaltocene metallo-cations that have distinct electronic and redox properties. One of the direct outcomes on the first synthesis of a complete set of cation derivatives is to discover highly stable cations, which are further integrated to construct metallo-polyelectrolytes as anion-exchange membranes in solid-state alkaline fuel cells. The device performance of these polyelectrolytes under highly basic and oxidative environments is competitive with many organo-polyelectrolytes.
机译:对于众多应用而言,阳离子是新兴功能性聚电解质的关键组成部分。该领域的快速发展需要探索具有先进性能的新型阳离子。在这里,我们描述了具有不同电子和氧化还原特性的钴茂金属阳离子的计算和实验设计的组合。全套阳离子衍生物的首次合成的直接结果之一是发现高度稳定的阳离子,将其进一步整合以构建金属-聚电解质作为固态碱性燃料电池中的阴离子交换膜。这些聚电解质在高度碱性和氧化环境下的器件性能与许多有机聚电解质竞争。

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