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Structure of a Graphene-Modified Electroactive Polymer for Membranes of Biomimetic Systems: Simulation and Experiment

机译:用于仿生体系膜的石墨烯改性电活性聚合物的结构:仿真与实验

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摘要

A model is proposed that describes the structure of water filled Nafion-graphene composite forming the body of an electroactive polymer membrane for actuators of biomimetic systems able to work in air and a liquid medium. The model predicts the growth of the ionic conductivity with increasing concentration of a graphene modifier, which is due to that the size of a part of clusters of the Nafion framework containing hydrophobic graphene flakes enlarges together with the pore size. Then the optimal concentration of the graphene modifier is reached, which provides the maximum ionic conductivity and actuation ability of the membrane as well as its elastic properties. The possibility of introducing into Nafion the modifier amount needed to improve the actuator operation is experimentally tested.
机译:提出了一种模型,其描述了用于形成能够在空气和液体介质中工作的仿生体系的致动器的电活性聚合物膜体的水填充Nafion-石墨烯复合材料的结构。 该模型预测离子电导率的生长随着石墨烯改性剂的浓度增加,这是由于含有疏水性石墨烯片的Nafion框架的一部分簇的尺寸与孔径一起扩大。 然后达到石墨烯改性剂的最佳浓度,其提供膜的最大离子电导率和致动能力以及其弹性性能。 通过实验测试改进致动器操作所需的改进剂量的可能性是实验测试的。

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