Fuchiwaki Masaki, Otero Toribio F
Kyushu Institute of Technology, Department of Mechanical Information Science and Technology, 680-4 Kawazu, Iizuka, Fukuoka, 820-8502, Japan.
J Mater Chem B. 2014 Apr 14;2(14):1954-1965. doi: 10.1039/c3tb21653e. Epub 2014 Feb 24.
Thick films of the polypyrrole-para-phenolsulfonic acid (PPy-HpPS) blend were electrogenerated on stainless steel plates. The self-supported films, once peeled off from the metal, were electrochemically characterized in aqueous solutions of NaCl and NaPF. The Na, Cl, P, S and F content of films, after attaining a different oxidation state, were determined by EDX. The bending movements of the bilayer (PPy-HpPS)/tape artificial muscle were video recorded during potential sweeps in both solutions allowing the translation of the prevalent ionic exchanges driven by the biomimetic reactions into macroscopic movements. Ionic exchanges between the film and the solution, biomimetic structural processes in the film, driving prevalent electrochemical reactions and film compositions related to each of the different structural potential domains defined by coulovoltammetric results were clarified. In NaPF solutions a prevalent exchange of anions exists: the film swells by oxidation and shrinks by reduction. In NaCl solutions prevailing exchange of cations or anions occurs in different potential ranges. Reactions related to the HpPS content play important roles at the more cathodic and more anodic overpotentials. The described methodology could be translated to biological reactions including reactive biopolymers.
聚吡咯-对苯酚磺酸(PPy-HpPS)共混物的厚膜在不锈钢板上电生成。自支撑膜一旦从金属上剥离,就在NaCl和NaPF的水溶液中进行电化学表征。通过能谱仪(EDX)测定膜在达到不同氧化态后的Na、Cl、P、S和F含量。在两种溶液中进行电位扫描期间,对双层(PPy-HpPS)/胶带人工肌肉的弯曲运动进行视频记录,从而将由仿生反应驱动的主要离子交换转化为宏观运动。阐明了膜与溶液之间的离子交换、膜中的仿生结构过程、驱动主要电化学反应以及与由库仑伏安法结果定义的每个不同结构电位域相关的膜组成。在NaPF溶液中存在主要的阴离子交换:膜通过氧化膨胀,通过还原收缩。在NaCl溶液中,阳离子或阴离子的主要交换发生在不同的电位范围内。与HpPS含量相关的反应在更阴极和更阳极的过电位下起重要作用。所描述的方法可以转化为包括反应性生物聚合物在内的生物反应。