首页> 外文会议>Conference on Active Materials: Behavior and Mechanics Mar 3-6, 2003 San Diego, California, USA >Electrical and Electrochemical Characterization of Electroconductive PPy-p(HEMA) Composite Hydrogels
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Electrical and Electrochemical Characterization of Electroconductive PPy-p(HEMA) Composite Hydrogels

机译:导电PPy-p(HEMA)复合水凝胶的电化学特性

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Two groups of polymers that have been the focus of widespread research are hydrogels and conducting electroactive polymers (CEPs). 'Intelligent' hydrogels are highly hydrophilic, cross-linked polymers possessing hydration properties that change in response to specific environmental stimuli such as pH, ionic strength, chemical species, magnetic fields, etc. Conducting electroactive polymers such as polypyrrole, polyaniline and polythiophene are highly conjugated, redox-active polymers with electrical and optical properties that change through many orders of magnitude depending upon redox state (doping). We have formed composites of inherently conductive polypyrrole within highly hydrophilic poly(hydroxyethyl methacrylate)-based hydrogels. These materials retain the hydration characteristics of hydrogels as well as the electroactivity and electronic conductivity of CEPs and are thus called 'electroconductive hydrogels'. The electrical and electrochemical properties of these polymer composites have been investigated. The electrochemical characteristics observed by cyclic voltammetry suggest less facile reduction of PPy within the composite hydrogel compared to electropolymerized PPy, as shown by the shift in the reduction peak potential from -472 mV for electropolymerized polypyrrole to -636 mV for the electroconductive composite gel. The network impedance magnitude for the electroconductive hydrogel remains quite low, ca. 100 Ohms, even upon approach to DC, over all frequencies and at all offset potentials suggesting retained electronic (bipolaronic) conductivity within the composite.
机译:一直是广泛研究的焦点的两类聚合物是水凝胶和导电性电活性聚合物(CEP)。 “智能”水凝胶是高度亲水的交联聚合物,具有水合特性,可响应特定的环境刺激(例如pH值,离子强度,化学物质,磁场等)而发生变化。导电的电活性聚合物(例如聚吡咯,聚苯胺和聚噻吩)非常具有电学和光学性质的共轭氧化还原活性聚合物,其变化取决于氧化还原状态(掺杂)的数量级。我们已经在高亲水性聚甲基丙烯酸羟乙酯基水凝胶中形成了固有导电性聚吡咯的复合材料。这些材料保留了水凝胶的水合特性以及CEP的电活性和电导率,因此被称为“导电水凝胶”。已经研究了这些聚合物复合材料的电学和电化学性能。通过循环伏安法观察到的电化学特性表明,与电聚合的PPy相比,复合水凝胶中PPy的还原较不容易,如还原峰电位从电聚合的聚吡咯的-472 mV到导电复合凝胶的-636 mV的变化所示。导电水凝胶的网络阻抗幅值仍然很低,约为。即使在接近直流电时,在所有频率和所有偏置电位下均为100欧姆,这表明复合材料内保留了电子(双极性)导电性。

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