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Modification of Conductivity and of Mechanical Properties of Electroactive Polymer (EAP) Thin Films by Titanium Ion Implantation

机译:钛离子注入对电活性聚合物(EAP)薄膜电导率和机械性能的改性

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We present a study of the influence on Young's modulus, stress and electrical conductivity of poly-dimethylsiloxane membranes implanted with titanium ions at energies from 5 to 35 keV, with doses up to 8×10~(16) ions/cm~2. The motivation for this study was to find the optimum implantation conditions to create electrodes for microfabricated dielectric electroactive polymer actuators, which must combine low resistivity with low stiffness. Two implantation techniques are used, Filtered Cathodic Vacuum Arc (FCVA) and the more conventional Low Energy broad beam Implanter (LEI). Of the two, it is found that the FCVA implanter is much better suited to create compliant electrodes.
机译:我们研究了在能量为5至35 keV的情况下,注入剂量高达8×10〜(16)离子/ cm〜2的钛离子对聚二甲基硅氧烷膜的杨氏模量,应力和电导率的影响。这项研究的动机是找到最佳植入条件,以创建用于微型电介质电活性聚合物致动器的电极,该电极必须兼具低电阻率和低刚度。使用两种注入技术,过滤阴极真空电弧(FCVA)和更常规的低能宽束注入器(LEI)。在这两者中,发现FCVA植入机更适合于制造顺应性电极。

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