Bünsow Johanna, Johannsmann Diethelm
Institute of Physical Chemistry, Clausthal University of Technology, Arnold-Sommerfeld-Str. 4, D-38678 Clausthal-Zellerfeld, Germany.
Macromol Rapid Commun. 2009 May 19;30(9-10):858-63. doi: 10.1002/marc.200800718. Epub 2009 Feb 18.
We report on a lithographic mode of electrochemically triggered free radical polymerization. The polymerization is initiated by the reduction of an electrochemically active initiator. Hydrogel patterns can be written by employing a small insulated counter electrode. The investigations show that the "pen" actually is a small oxygen bubble between the counter electrode and the sample surface. The spot size corresponds to the size of the bubble produced between the counter electrode and the substrate. The gas/liquid interface traps the growing chains and guides the growth of a gel layer at the bubble surface. Since bubbles can be created and controlled in many different ways, this mechanism constitutes an easy route for the formation of structured, surface-bound polymer layers.
我们报道了一种电化学引发自由基聚合的光刻模式。聚合反应由电化学活性引发剂的还原引发。通过使用一个小的绝缘对电极可以写入水凝胶图案。研究表明,“笔”实际上是对电极与样品表面之间的一个小氧气泡。光斑尺寸对应于对电极与基底之间产生的气泡大小。气/液界面捕获生长链并引导气泡表面凝胶层的生长。由于气泡可以通过多种不同方式产生和控制,这种机制为形成结构化的表面结合聚合物层提供了一条简便途径。