Cong Shengyu, Chen Junxin, Ding Bowen, Lan Liuyuan, Wang Yazhou, Chen Chaoyue, Li Zhengke, Heeney Martin, Yue Wan
Guangzhou Key Laboratory of Flexible Electronic Materials and Wearable Devices, School of Materials Science and Engineering, Sun Yat-sen University, Guangzhou 510275, People's Republic of China.
Department of Chemistry and Centre for Processable Electronics, Imperial College London, Molecular Sciences Research Hub (White City Campus), 80 Wood Lane Shepherd's Bush, London W12 0BZ, UK.
Mater Horiz. 2023 Jul 31;10(8):3090-3100. doi: 10.1039/d3mh00418j.
Functionalized polymeric mixed ionic-electronic conductors (PMIECs) are highly desired for the development of electrochemical applications, yet are hindered by the limited conventional synthesis techniques. Here, we propose a "graft-onto-polymer" synthesis strategy by post-polymerization functionalization (GOP-PPF) to prepare a family of PMIECs sharing the same backbone while functionalized with varying ethylene glycol (EG) compositions (two, four, and six EG repeating units). Unlike the typical procedure, GOP-PPF uses a nucleophilic aromatic substitution reaction for the facile and versatile attachment of functional units to a pre-synthesized conjugated-polymer precursor. Importantly, these redox-active PMIECs are investigated as a platform for energy storage devices and organic electrochemical transistors (OECTs) in aqueous media. The ion diffusivity, charge mobility and charge-storage capacity can be significantly improved by optimizing the EG composition. Specifically, g2T2-gBT6 containing the highest EG density gives the highest charge-storage capacity exceeding 180 F g among the polymer series, resulting from the improved ion diffusivity. Moreover, g2T2-gBT4 with four EG repeating units exhibits a superior performance compared to its two analogues in OECTs, associated with a high * up to 359 F V cm s, owing to the optimal balance between ionic-electronic coupling and charge mobility. Through the GOP-PPF, PMIECs can be tailored to access desirable performance metrics at the molecular level.
功能化聚合物混合离子-电子导体(PMIECs)对于电化学应用的发展至关重要,但传统合成技术有限,阻碍了其发展。在此,我们提出一种通过后聚合功能化(GOP-PPF)的“接枝到聚合物”合成策略,以制备一系列具有相同主链但用不同乙二醇(EG)组成(两个、四个和六个EG重复单元)进行功能化的PMIECs。与典型方法不同,GOP-PPF使用亲核芳香取代反应,将功能单元轻松且通用地连接到预合成的共轭聚合物前体上。重要的是,这些氧化还原活性PMIECs被研究用作水性介质中储能装置和有机电化学晶体管(OECTs)的平台。通过优化EG组成,可以显著提高离子扩散率、电荷迁移率和电荷存储容量。具体而言,在聚合物系列中,含有最高EG密度的g2T2-gBT6具有超过180 F g的最高电荷存储容量,这是由于离子扩散率提高所致。此外,具有四个EG重复单元的g2T2-gBT4在OECTs中与其两个类似物相比表现出优异的性能,由于离子-电子耦合和电荷迁移率之间的最佳平衡,其高达359 F V cm s。通过GOP-PPF,可以在分子水平上定制PMIECs以获得理想的性能指标。