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首页> 外文期刊>Journal of Applied Polymer Science >Feasibility of conducting semi-interpenetrating networks based on a poly(ethylene oxide) network and poly(3,4-ethylenedioxythiophene) in actuator design
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Feasibility of conducting semi-interpenetrating networks based on a poly(ethylene oxide) network and poly(3,4-ethylenedioxythiophene) in actuator design

机译:在执行器设计中进行基于聚环氧乙烷网络和聚(3,4-乙撑二氧噻吩)的半互穿网络的可行性

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A new type of synthetic pathway-the use of interpenetrating polymer networks (IPNs)-is proposed to design conducting polymer-based actuators. Two types of materials with interesting conducting properties were prepared: (1) a semi-IPN between poly(3,4-ethylenedioxythiophene) (PEDOT) and branched poly(ethylene oxide) (PEO) network; (2) a tricomponent IPN between PEDOT and a PEO/polycarbonate (PC)-based network as the ionic conducting partner. In the first case, the influence of the amount of branching in the PEO network on the EDOT uptake and electrochemical properties was studied. A maximum conductivity (15 S cm(-1)) was obtained for 60 wt % branched PEO in the material. Moreover, the dispersion profile of PEDOT in the material was shown by elemental analysis and energy dispersion spectroscopy to follow a gradient through the thickness of the film leading to a built-in three-layered device. With respect to PEO/PC materials, the best results were obtained for. about 80 wt % PEO in the matrix where the material remains sufficiently elastomeric. In this case, the conductivity reaches about 1 S cm-1 for a 10 to 30 wt % polycarbonate content. These materials are capable of reversible 45degrees angular deflections under a 0.5V potential difference. (C) 2003 Wiley Periodicals, Inc. [References: 39]
机译:提出了一种新型的合成途径-互穿聚合物网络(IPN)的使用,以设计基于聚合物的导电执行器。制备了两种具有令人感兴趣的导电性能的材料:(1)聚(3,4-乙烯二氧噻吩)(PEDOT)和支化聚环氧乙烷(PEO)网络之间的半IPN; (2)PEDOT和基于PEO /聚碳酸酯(PC)的网络之间的三组分IPN作为离子导电伙伴。在第一种情况下,研究了PEO网络中支链数量对EDOT吸收和电化学性能的影响。对于材料中60 wt%的支链PEO,可获得最大电导率(15 S cm(-1))。此外,通过元素分析和能量色散光谱法显示了PEDOT在材料中的色散分布,该色散分布遵循薄膜厚度方向的梯度,从而形成了内置的三层器件。对于PEO / PC材料,获得了最佳结果。基质中约80 wt%的PEO,其中材料保持足够的弹性。在这种情况下,对于10至30重量%的聚碳酸酯含量,电导率达到约1S cm-1。这些材料在0.5V的电位差下能够可逆45度角偏转。 (C)2003 Wiley Periodicals,Inc. [参考:39]

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