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An Electrically Driven and Readable Molecular Monolayer Switch Based on a Solid Electrolyte

机译:基于固体电解质的电驱动和可读分子单层开关

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The potential application of molecular switches as active elements in information storage has been demonstrated through numerous works. Importantly, such switching capabilities have also been reported for self-assembled monolayers (SAMs). SAMs of electroactive molecules have recently been exploited as electrochemical switches. Typically, the state of these switches could be read out through their optical and/or magnetic response. These output reading processes are difficult to integrate into devices, and furthermore, there is a need to use liquid environments for switching the redox-active molecular systems. In this work, both of these challenges were overcome by using an ionic gel as the electrolyte medium, which led to an unprecedented solid-state device based on a single molecular layer. Moreover, electrochemical impedance has been successfully exploited as the output of the system.
机译:通过许多作品证明了作为信息存储中的有源元素的分子开关的潜在应用。 重要的是,还针对自组装单层(SAM)报道了这种切换能力。 电活性分子的SAM最近被利用为电化学开关。 通常,可以通过它们的光学和/或磁响应读出这些开关的状态。 这些输出读取过程难以集成到装置中,此外,需要使用用于切换氧化还原活性分子系统的液体环境。 在这项工作中,通过使用离子凝胶作为电解质介质来克服这两种挑战,这导致了基于单个分子层的前所未有的固态装置。 此外,电化学阻抗已经成功被利用为系统的输出。

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