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Actuators based on conducting poly(3,4-ethylenedioxythiophene) / PEO semi-IPN

机译:基于导电聚(3,4-乙烯二氧噻吩)/ PEO半IPN的执行器

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摘要

A new approach is proposed, namely the use of Interpenetrating Polymer Networks (IPNs) in order to solve the interface and adhesion problems in the design of classical conducting polymer based actuators. Semi IPN type materials are synthesized between poly(3,4-ethylenedioxythiophene) and a poly(ethyleneoxide) based network as the ionic conducting partner. The synthetic pathway which will be presented ensures a gradual dispersion of the electronic conducting polymer through the thickness of the material i.e. the content decreases from the outside towards the center of the film. The system is thus similar to a layered one with the advantage that the intimate combination of the two polymers needs no adhesive interface. The influence of the morphology and chemical composition of the matrix on the electronic conductivity of the material have been studied. The surface conductivity can reach 15 S/cm. Finally, this material is capable of a 45° angular deflexion under a 0.5 V potential difference.
机译:提出了一种新方法,即使用互穿聚合物网络(IPN),以解决传统的基于导电聚合物的执行器设计中的界面和粘合问题。半IPN型材料是在聚(3,4-乙撑二氧噻吩)和基于聚环氧乙烷的网络之间作为离子导电伴侣合成的。将要呈现的合成途径确保了电子导电聚合物通过材料的厚度逐渐分散,即,含量从膜的外部朝向膜的中心逐渐降低。因此,该系统类似于分层系统,其优点在于两种聚合物的紧密结合不需要粘合剂界面。研究了基质的形态和化学组成对材料电子电导率的影响。表面电导率可达到15 S / cm。最后,这种材料在0.5 V的电位差下能够产生45°的角偏转。

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