Departments of Chemistry and Chemical & Biomolecular Engineering, National University of Singapore, Singapore, 119077, Singapore.
Department of Chemistry and Biochemistry, University of California, Santa Barbara, Building 232, Santa Barbara, CA, 93106, USA.
Adv Mater. 2022 Jun;34(22):e2104206. doi: 10.1002/adma.202104206. Epub 2021 Oct 8.
Conjugated polyelectrolytes (CPEs) are characterized by an electronically delocalized backbone bearing ionic functionalities. These features lead to properties relevant for use in energy-storing pseudocapacitor devices, including ionic conductivity, water processability, gel-formation, and formation of polaronic species stabilized by electrostatic interactions. In this Perspective, the basis for evaluating the figures of merit for pseudocapacitors is provided, together with the techniques used for their evaluation. The general utility and challenges encountered with neutral conjugated polymers are then discussed. Finally, recent advances on the use of CPEs in pseudocapacitor devices are reviewed. The article is concluded by discussing how their miscibility in aqueous media permits the incorporation of CPEs in living materials that are capable of switching function from extraction of energy from bacterial metabolic pathways to pseudocapacitor energy storage.
共轭聚合物电解质(CPEs)的特征在于具有承载离子官能团的电子离域主链。这些特性导致了与储能赝电容器器件相关的性能,包括离子导电性、水加工性、凝胶形成以及通过静电相互作用稳定的极化子物种的形成。在本观点中,提供了评估赝电容器的优值的基础,以及用于评估它们的技术。然后讨论了中性共轭聚合物的一般实用性和遇到的挑战。最后,综述了 CPE 在赝电容器器件中的应用的最新进展。文章最后讨论了它们在水介质中的混溶性如何允许 CPE 掺入能够从细菌代谢途径中提取能量转换为赝电容器储能功能的活体材料。