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Wireless Electrochemical Actuation of Conducting Polymers

机译:导电聚合物的无线电化学致动

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Electrochemical actuation of conducting polymers usually requires a direct connection to an electric power supply. In this contribution, we suggest to overcome this issue by using the concept of bipolar electrochemistry. This allows changing the oxidation state of the polymer in a gradual and wireless way. Free-standing polypyrrole films were synthesized with an intrinsic morphological asymmetry of their two faces in order to form a bilayer structure. Immersing such objects in an electrolyte solution and exposing them to a potential gradient leads to the asymmetric oxidation/reduction of the polymer, resulting in differential shrinking and swelling along the main axis. This additional asymmetry is responsible for a structural deformation. Optimization allowed highly efficient bending, which is expected to open up completely new directions in the field of actuation due to the wireless mode of action.
机译:导电聚合物的电化学致动通常需要直接连接电力供应。 在这一贡献中,我们建议通过使用双极电化学的概念来克服这个问题。 这允许以逐渐和无线方式改变聚合物的氧化状态。 用它们的两个面的内在形态不对称合成自由静止的聚吡咯膜,以形成双层结构。 将这些物体浸入电解质溶液中并将其暴露于电位梯度导致聚合物的不对称氧化/还原,导致沿主轴差异缩小和膨胀。 该额外的不对称性负责结构变形。 优化允许高效的弯曲,预计由于无线动作模式,预计将在致动领域开辟完全新的方向。

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