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Balancing Ionic and Electronic Conduction for High-Performance Organic Electrochemical Transistors

机译:高性能有机电化学晶体管的离子和电子传导的平衡

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摘要

Conjugated polymers that support mixed (electronic and ionic) conduction are in demand for applications spanning from bioelectronics to energy harvesting and storage. To design polymer mixed conductors for high-performance electrochemical devices, relationships between the chemical structure, charge transport, and morphology must be established. A polymer series bearing the same p-type conjugated backbone with increasing percentage of hydrophilic, ethylene glycol side chains is synthesized, and their performance in aqueous electrolyte gated organic electrochemical transistors (OECTs) is studied. By using device physics principles and electrochemical analyses, a direct relationship is found between the OECT performance and the balanced mixed conduction. While hydrophilic side chains are required to facilitate ion transport-thus enabling OECT operation-swelling of the polymer is not de facto beneficial for balancing mixed conduction. It is shown that heterogeneous water uptake disrupts the electronic conductivity of the film, leading to OECTs with lower transconductance and slower response times. The combination of in situ electrochemical and structural techniques shown here contributes to the establishment of the structure-property relations necessary to improve the performance of polymer mixed conductors and subsequently of OECTs.
机译:从生物电子学到能量收集和存储的各种应用都需要支持混合(电子和离子)传导的共轭聚合物。为了设计用于高性能电化学装置的聚合物混合导体,必须建立化学结构,电荷传输和形态之间的关系。合成了带有相同p型共轭主链且亲水百分比较高的乙二醇侧链的聚合物系列,并研究了它们在水性电解质门控有机电化学晶体管(OECT)中的性能。通过使用器件物理原理和电化学分析,发现了OECT性能与平衡混合传导之间的直接关系。尽管需要亲水性侧链来促进离子传输,因此使OECT能够进行操作,但聚合物的溶胀实际上对平衡混合传导没有好处。结果表明,异质水的吸收破坏了薄膜的电子传导性,导致OECTs的跨导性降低且响应时间变慢。此处显示的原位电化学和结构技术的结合有助于建立必要的结构-特性关系,以改善聚合物混合导体以及随后的OECTs的性能。

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