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The evolution of cyclopropenium ions into functional polyelectrolytes

机译:环丙烯离子演变成功能性聚电解质

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摘要

Versatile polyelectrolytes with tunable physical properties have the potential to be transformative in applications such as energy storage, fuel cells and various electronic devices. Among the types of materials available for these applications, nanostructured cationic block copolyelectrolytes offer mechanical integrity and well-defined conducting paths for ionic transport. To date, most cationic polyelectrolytes bear charge formally localized on heteroatoms and lack broad modularity to tune their physical properties. To overcome these challenges, we describe herein the development of a new class of functional polyelectrolytes based on the aromatic cyclopropenium ion. We demonstrate the facile synthesis of a series of polymers and nanoparticles based on monomeric cyclopropenium building blocks incorporating various functional groups that affect physical properties. The materials exhibit high ionic conductivity and thermal stability due to the nature of the cationic moieties, thus rendering this class of new materials as an attractive alternative to develop ion-conducting membranes.
机译:具有可调物理特性的多功能聚电解质在诸如储能,燃料电池和各种电子设备等应用中具有变革性的潜力。在可用于这些应用的材料类型中,纳米结构的阳离子嵌段共聚电解质可提供机械完整性和明确的离子传输导电路径。迄今为止,大多数阳离子聚电解质的电荷均正式地位于杂原子上,并且缺乏广泛的模块化来调节其物理性质。为了克服这些挑战,我们在本文中描述了基于芳族环丙烯离子的新型功能性聚电解质的开发。我们展示了基于单体环丙烯构件的一系列聚合物和纳米粒子的轻松合成,这些单体结合了影响物理性质的各种官能团。该材料由于阳离子部分的性质而具有高的离子传导性和热稳定性,因此使这类新材料成为开发离子传导膜的有吸引力的替代方法。

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