Ratcliff Erin L, Hillier Andrew C
Department of Chemical Engineering and Department of Chemistry, Iowa State University, Ames, Iowa 50011, USA.
Langmuir. 2007 Sep 11;23(19):9905-10. doi: 10.1021/la700827w. Epub 2007 Aug 16.
We report a method for the directed electrodeposition of polymer films in various patterns using spatially controllable electric field gradients. One- and two- dimensional surface electric field gradients were produced by applying different potential values at spatially distinct locations on an electrode surface. Variations in the resulting local electrochemical potentials were used to spatially manipulate the rate of electrodeposition of several polymers. By controlling the electric field gradient in the presence of sequentially varying deposition solutions, complex polymer patterns could be produced. One-dimensional structures consisting of alternating bands of polyaniline and either poly(phenylene) oxide or poly(aminophenylene) oxide were produced, as well as more complex two-dimensional structures. Film characterization was achieved through optical imaging, UV-vis spectroscopy, and ellipsometry. Results indicate that this directed deposition technique is a simple strategy to create complex, millimeter-sized surface patterns of electrodeposited materials.
我们报道了一种利用空间可控电场梯度以各种图案定向电沉积聚合物薄膜的方法。通过在电极表面不同空间位置施加不同电位值来产生一维和二维表面电场梯度。利用由此产生的局部电化学电位变化在空间上操纵几种聚合物的电沉积速率。通过在依次变化的沉积溶液存在下控制电场梯度,可以产生复杂的聚合物图案。制备出了由聚苯胺与聚(亚苯基)氧化物或聚(氨基亚苯基)氧化物交替带组成的一维结构以及更复杂的二维结构。通过光学成像、紫外 - 可见光谱和椭偏仪对薄膜进行表征。结果表明,这种定向沉积技术是创建电沉积材料复杂毫米级表面图案的一种简单策略。