Fraunhofer Institute for Biomedical Engineering, Department of Nanobiotechnology and Nanomedicine, Potsdam, Germany.
Electrophoresis. 2011 Sep;32(18):2448-55. doi: 10.1002/elps.201100096. Epub 2011 Aug 19.
For the investigation of alternating current electrokinetic effects, a system is presented that allows for the simultaneous observation of fluid flow above and around microelectrodes in all three directions in space. Beside the usual microscopical view from top, lateral observation through the same objective is made possible by two small mirrors that are placed next to the electrodes. Fluid flow and movement of fluorescent nanoparticles above interdigitated electrodes are monitored by fluorescence microscopy and digital imaging and are further analysed by image processing. Field frequencies are varied from 10 Hz to 1 GHz at up to 10V(rms) . Electrical conductivity of the fluid is monitored in situ in the actual measuring chamber.
为了研究交流电动力学效应,我们提出了一种系统,可以在空间的三个方向上同时观察微电极上方和周围的流体流动。除了通常从顶部进行的显微镜观察外,通过两个放置在电极旁边的小镜子也可以实现侧向观察。荧光显微镜和数字成像用于监测叉指电极上方的流体流动和荧光纳米粒子的运动,并通过图像处理进行进一步分析。场频率可在 10Hz 至 1GHz 之间变化,最高可达 10V(rms)。在实际测量室内原位监测流体的电导率。