Hackett Alissa J, Malmström Jenny, Molino Paul J, Gautrot Julien E, Zhang Hongrui, Higgins Michael J, Wallace Gordon G, Williams David E, Travas-Sejdic Jadranka
Polymer Electronics Research Centre, School of Chemical Sciences, University of Auckland, New Zealand.
J Mater Chem B. 2015 Dec 28;3(48):9285-9294. doi: 10.1039/c5tb02125a. Epub 2015 Nov 17.
This work demonstrates polymer brushes grafted from conductive polymer films which display dynamic surface switching dependent on salt, temperature and electrode potential. The electroactivity presented by the conductive polymer and the responsiveness of the grafted brushes leads to an interface with multiple control parameters. Here, we demonstrate this concept by grafting of uncharged brushes of poly(ethylene glycol)methyl ether methacrylates from conducting polymer poly(3,4-ethylenedioxythiophene) (PEDOT), and observe a temperature- and salt-induced switch of brush conformation, and their effect on the electrochemistry of the material. The switching conditions can be tailored by copolymerizing monomers with different numbers of ethylene glycol units. In addition, these surfaces exhibit antifouling properties, leading to potential applications such as electrically-addressable biointerfaces.
这项工作展示了从导电聚合物薄膜接枝的聚合物刷,其表现出依赖于盐、温度和电极电位的动态表面切换。导电聚合物呈现的电活性以及接枝刷的响应性导致了具有多个控制参数的界面。在此,我们通过从导电聚合物聚(3,4-乙撑二氧噻吩)(PEDOT)接枝聚(乙二醇)甲基醚甲基丙烯酸酯的不带电刷来证明这一概念,并观察到刷构象的温度和盐诱导切换及其对材料电化学的影响。通过将具有不同乙二醇单元数的单体共聚,可以调整切换条件。此外,这些表面具有防污性能,从而带来了诸如电寻址生物界面等潜在应用。