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具有改善的离子可及性的聚乙二醇修饰的n型导电聚合物,用于高性能有机电化学晶体管。

Polyethylene glycol-decorated n-type conducting polymers with improved ion accessibility for high-performance organic electrochemical transistors.

作者信息

Tang Haoran, Liang Yuanying, Yang Chi-Yuan, Luo Xi, Yu Jiangkai, Zhang Kai, Fabiano Simone, Huang Fei

机构信息

Institute of Polymer Optoelectronic Materials and Devices, State Key Laboratory of Luminescent Materials and Devices, Guangdong Basic Research Center of Excellence for Energy & Information Polymer Materials, South China University of Technology, Guangzhou 510640, China.

Guangdong Artificial Intelligence and Digital Economy Laboratory (Guangzhou), Guangzhou 510335, Guangdong, China.

出版信息

Mater Horiz. 2024 Oct 28;11(21):5419-5428. doi: 10.1039/d4mh00979g.

Abstract

High-performance n-type organic mixed ionic-electronic conductors (OMIECs) are essential for advancing complementary circuits based on organic electrochemical transistors (OECTs). Despite significant progress, current n-type OMIECs often exhibit lower transconductance and slower response times compared to their p-type counterparts, limiting the development of OECT-based complementary circuits. Optimizing the conjugated backbone and side chain structures of OMIECs is critical for enhancing both ion and electron transport efficiencies while maintaining a delicate balance between the two. In this study, hydrophilic polyethylene glycol (PEG) side chains were incorporated into the highly conductive n-type polymer poly(3,7-dihydrobenzo[1,2-:4,5-']difuran-2,6-dione) (PBFDO) backbone to achieve this goal. The incorporation of PEG chains improved ion accessibility, and by adjusting the PEG content, the electronic and ionic transport properties were fine-tuned, ultimately enhancing the performance of OECTs and related p-n complementary circuits. The n-type OECTs based on PBFDO-PEG50wt% demonstrated exceptional transfer characteristics, including a transient response time () as low as 72 μs, a high geometry-normalized transconductance exceeding 400 S cm, and an impressive * value surpassing 720 F cm V s. Notably, the use of PBFDO-PEG50wt% in a complementary inverter resulted in a voltage gain of 20 V/V, more than five times higher than that achieved with unmodified PBFDO (<4 V/V). These findings highlight the importance of balancing electron and ion transport characteristics in OMIECs to achieve high performance in OECTs and their associated circuits, and they validate PEG decoration as an effective approach.

摘要

高性能n型有机混合离子-电子导体(OMIECs)对于推进基于有机电化学晶体管(OECTs)的互补电路至关重要。尽管取得了重大进展,但与p型同类材料相比,目前的n型OMIECs通常表现出较低的跨导和较慢的响应时间,限制了基于OECT的互补电路的发展。优化OMIECs的共轭主链和侧链结构对于提高离子和电子传输效率至关重要,同时要在两者之间保持微妙的平衡。在本研究中,将亲水性聚乙二醇(PEG)侧链引入到高导电性的n型聚合物聚(3,7-二氢苯并[1,2-:4,5-']二呋喃-2,6-二酮)(PBFDO)主链中以实现这一目标。PEG链的引入改善了离子可及性,通过调整PEG含量,对电子和离子传输性能进行了微调,最终提高了OECTs及相关p-n互补电路的性能。基于PBFDO-PEG50wt%的n型OECTs表现出优异的转移特性,包括低至72 μs的瞬态响应时间()、超过400 S cm的高几何归一化跨导以及超过720 F cm V s的令人印象深刻的*值。值得注意的是,在互补逆变器中使用PBFDO-PEG50wt%可实现20 V/V的电压增益,比未改性的PBFDO(<4 V/V)高出五倍以上。这些发现突出了在OMIECs中平衡电子和离子传输特性对于在OECTs及其相关电路中实现高性能的重要性,并验证了PEG修饰是一种有效的方法。

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