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Green Synthesis of Lactone-Based Conjugated Polymers for n-Type Organic Electrochemical Transistors

机译:n型有机电化学晶体管内酯基共轭聚合物的绿色合成

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摘要

As new and better materials are implemented for organic electrochemical transistors (OECTs), it becomes increasingly important to adopt more economic and environmentally friendly synthesis pathways with respect to conventional transition-metal-catalyzed polymerizations. Herein, a series of novel n-type donor-acceptor-conjugated polymers based on glycolated lactone and bis-isatin units are reported. All the polymers are synthesized via green and metal-free aldol polymerization. The strong electron-deficient lactone-building blocks provide low-lying lowest unoccupied molecular orbital (LUMO) and the rigid backbone needed for efficient electron mobility up to 0.07 cm(2) V-1 s(-1). Instead, polar atoms in the backbone and ethylene glycol side chains contribute to the ionic conductivity. The resulting OECTs exhibit a normalized maximum transconductance g(m,norm) of 0.8 S cm(-1) and a mu C* of 6.7 F cm(-1) V-1 s(-1). Data on the microstructure show that such device performance originates from a unique porous morphology together with a highly disordered amorphous microstructure, leading to efficient ion-to-electron coupling. Overall, the design strategy provides an inexpensive and metal-free polymerization route for high-performing n-type OECTs.
机译:随着有机电化学晶体管 (OECT) 采用新的和更好的材料,相对于传统的过渡金属催化聚合,采用更经济、更环保的合成途径变得越来越重要。本文报道了一系列基于乙醇内酯和双靛红单元的新型n型供体-受体-共轭聚合物。所有聚合物均通过绿色和无金属的醛醇聚合合成。强缺电子内酯构建单元提供低洼、最低的未占据分子轨道 (LUMO) 和高达 0.07 cm(2) V-1 s(-1) 的高效电子迁移率所需的刚性骨架。相反,主链和乙二醇侧链中的极性原子有助于离子电导率。所得OECT表现出0.8 S cm(-1)的归一化最大跨导g(m,norm)和6.7 F cm(-1) V-1 s(-1)的μ C*。微观结构数据表明,这种器件性能源于独特的多孔形态和高度无序的非晶微结构,从而实现了高效的离子-电子耦合。总体而言,该设计策略为高性能 n 型 OECT 提供了一种廉价且无金属的聚合路线。

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