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Pursuing Polymer Dielectric Interfacial Effect in Organic Transistors for Photosensing Performance Optimization

机译:在有机晶体管中追求聚合物介电界面效应以优化光敏性能

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摘要

Polymer dielectrics in organic field‐effect transistors (OFETs) are essential to provide the devices with overall flexibility, stretchability, and printability and simultaneously introduce charge interaction on the interface with organic semiconductors (OSCs). The interfacial effect between various polymer dielectrics and OSCs significantly and intricately influences device performance. However, understanding of this effect is limited because the interface is buried and the interfacial charge interaction is difficult to stimulate and characterize. Here, this challenge is overcome by utilizing illumination to stimulate the interfacial effect in various OFETs and to characterize the responses of the effect by measuring photoinduced changes of the OFETs performances. This systemic investigation reveals the mechanism of the intricate interfacial effect in detail, and mathematically explains how the photosensitive OFETs characteristics are determined by parameters including polar group of the polymer dielectric and the OSC side chain. By utilizing this mechanism, performance of organic electronics can be precisely controlled and optimized. OFETs with strong interfacial effect can also show a signal additivity caused by repeated light pulses, which is applicable for photostimulated synapse emulator. Therefore, this work enlightens a detailed understanding on the interface effect and provides novel strategies for optimizing OFET photosensory performances.
机译:有机场效应晶体管(OFET)中的聚合物电介质对于为设备提供整体灵活性,可拉伸性和可印刷性以及同时在与有机半导体(OSC)的界面上引入电荷相互作用至关重要。各种聚合物电介质和OSC之间的界面效应会显着而复杂地影响器件性能。但是,由于界面被掩埋并且界面电荷相互作用难以激发和表征,因此对该效果的理解受到限制。在这里,通过利用照明来激发各种OFET中的界面效应并通过测量OFET性能的光诱导变化来表征该效应的响应,从而克服了这一挑战。该系统研究详细揭示了复杂界面效应的机理,并在数学上解释了如何通过包括聚合物电介质的极性基团和OSC侧链在内的参数确定光敏OFETs特性。通过利用这种机制,可以精确地控制和优化有机电子产品的性能。具有强界面作用的OFET还可以显示由重复的光脉冲引起的信号可加性,适用于光刺激突触模拟器。因此,这项工作启发了人们对界面效应的详细理解,并为优化OFET光感测性能提供了新颖的策略。

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