Department of Chemical and Biomolecular Engineering, North Carolina State University, Raleigh, NC 27695, USA.
Macromol Rapid Commun. 2012 Jan 16;33(1):61-8. doi: 10.1002/marc.201100535. Epub 2011 Nov 22.
Ionic polymer-metal composites (IPMCs) represent an important class of stimuli-responsive polymers that are capable of bending upon application of an electric potential. Conventional IPMCs, prepared with Nafion and related polyelectrolytes, often suffer from processing challenges, relatively low actuation levels and back relaxation during actuation. In this study, we examine and compare the effects of fabrication and solvent on the actuation behavior of a block ionomer with a sulfonated midblock and glassy endblocks that are capable of self-organizing and thus stabilizing a molecular network in the presence of a polar solvent. Unlike Nafion, this material can be readily dissolved and cast from solution to yield films that vary in thickness and exhibit enormous solvent uptake. Cycling the initial chemical deposition of Pt on the surfaces of swollen films (the compositing process) increases the extent to which the electrodes penetrate the films, thereby improving contact along the polymer/electrode interface. The maximum bending actuation measured from IPMCs prepared with different solvents is at least comparable, but is often superior, to that reported for conventional IPMCs, without evidence of back relaxation. An unexpected characteristic observed here is that the actuation direction can be solvent regulated. Our results confirm that this block ionomer constitutes an attractive alternative for use in IPMCs and their associated applications.
离子聚合物-金属复合材料(IPMCs)是一类重要的刺激响应聚合物,它们在施加电场时能够弯曲。传统的 IPMC 通常使用 Nafion 和相关的聚合物电解质制备,在制备和使用过程中会遇到一些挑战,例如相对较低的驱动水平和在驱动过程中的反向松弛。在这项研究中,我们研究并比较了制造工艺和溶剂对具有磺化中间嵌段和玻璃状末端嵌段的嵌段离聚物的驱动行为的影响,这种嵌段离聚物能够在极性溶剂存在下自组织并稳定分子网络。与 Nafion 不同,这种材料可以很容易地溶解在溶液中并从溶液中浇铸成膜,其厚度可以变化,并具有巨大的溶剂吸收能力。循环初始化学沉积 Pt 在膨胀膜的表面上(复合过程)增加了电极渗透到膜中的程度,从而改善了聚合物/电极界面的接触。从使用不同溶剂制备的 IPMC 中测量到的最大弯曲驱动与传统 IPMC 报告的驱动相当,甚至更好,而且没有反向松弛的迹象。这里观察到的一个意外特征是,驱动方向可以通过溶剂来调节。我们的结果证实,这种嵌段离聚物是一种很有吸引力的替代传统 IPMC 的选择,可用于其相关应用。