论文标题

具有极性侧链的共轭聚合物的设计和评估作为电化学储存电解质储存的电极材料

Design and evaluation of conjugated polymers with polar side chains as electrode materials for electrochemical energy storage in aqueous electrolytes

论文作者

Moia, Davide, Giovannitti, Alexander, Szumska, Anna A., Maria, Iuliana P., Rezasoltani, Elham, Sachs, Michael, Schnurr, Martin, Barnes, Piers R. F., McCulloch, Iain, Nelson, Jenny

论文摘要

我们报告了氧化还原活性共轭聚合物的开发,并潜在地应用于电化学能源储存。侧链工程可以从溶液,水溶液中的稳定性以及离子和电子电荷载体的有效运输中处理聚合物电极。我们合成了3,3'dialkoxybithiopheny Homo聚合物(P型聚合物),并与萘二萘和萘合成1,4,5,8-甲基二酰基 - 二二二二二二二酰胺 - 二烷基二苯乙烯二苯乙烯(NDI GT2)类型的共聚物或Z in型侧链链链链,或Z in typer in nim ni。对于后者,我们开发了一种官能化的合成,将极性zwitterion侧链连接到聚合物主链上,以避免净化极性中间体的挑战。我们证明了在水性电解质中P-和N型聚合物的溶液加工电极的快速和可逆充电,而无需使用添加剂或多孔脚手架,以及胶片厚的胶片。我们将光谱电化学作为操作技术来探测电极的电荷状态。这表明,P型聚合物和Zwitterion N型聚合物的薄膜可以可逆地为每个重复单元(Bipolaron组)充满两种电子电荷。我们将这些聚合物的薄膜组合在两个电极细胞中,并以高氧化还原稳定性显示出高达1.4 V的输出电压。我们的发现证明了具有适当的极性侧链功能化共轭聚合物的潜力,以提高水溶液中聚合物电极的特定能力,可逆性和速率能力。

We report the development of redox-active conjugated polymers with potential application to electrochemical energy storage. Side chain engineering enables processing of the polymer electrodes from solution, stability in aqueous electrolytes and efficient transport of ionic and electronic charge carriers. We synthesized a 3,3' dialkoxybithiophene homo polymer (p type polymer) with glycol side chains and prepared naphthalene 1,4,5,8-tetracarboxylic-diimide-dialkoxybithiophene (NDI gT2) copolymers (n type polymer) with either a glycol or zwitterionic side chain on the NDI unit. For the latter, we developed a post-functionalization synthesis to attach the polar zwitterion side chains to the polymer backbone to avoid challenges of purifying polar intermediates. We demonstrate fast and reversible charging of solution processed electrodes for both the p- and n type polymers in aqueous electrolytes, without using additives or porous scaffolds and for films up to micrometers thick. We apply spectroelectrochemistry as an in operando technique to probe the state of charge of the electrodes. This reveals that thin films of the p-type polymer and zwitterion n-type polymer can be charged reversibly with up to two electronic charges per repeat unit (bipolaron formation). We combine thin films of these polymers in a two-electrode cell and demonstrate output voltages of up to 1.4 V with high redox stability. Our findings demonstrate the potential of functionalizing conjugated polymers with appropriate polar side chains to improve specific capacity, reversibility and rate capabilities of polymer electrodes in aqueous electrolytes.

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