Department of Physics, Pusan National University, Busan 609-735, Korea.
Nat Commun. 2013;4:1487. doi: 10.1038/ncomms2485.
Since Michael Faraday and Joseph Henry made their great discovery of electromagnetic induction, there have been continuous developments in electrical power generation. Most people today get electricity from thermal, hydroelectric, or nuclear power generation systems, which use this electromagnetic induction phenomenon. Here we propose a new method for electrical power generation, without using electromagnetic induction, by mechanically modulating the electrical double layers at the interfacial areas of a water bridge between two conducting plates. We find that when the height of the water bridge is mechanically modulated, the electrical double layer capacitors formed on the two interfacial areas are continuously charged and discharged at different phases from each other, thus generating an AC electric current across the plates. We use a resistor-capacitor circuit model to explain the results of this experiment. This observation could be useful for constructing a micro-fluidic power generation system in the near future.
自从迈克尔·法拉第和约瑟夫·亨利做出他们关于电磁感应的伟大发现以来,电能的产生一直在不断发展。今天,大多数人从热能、水力发电或核能发电系统中获取电能,这些系统都利用了这种电磁感应现象。在这里,我们提出了一种新的发电方法,不使用电磁感应,而是通过机械调制两个导电板之间的水桥界面处的双电层。我们发现,当水桥的高度被机械调制时,在两个界面上形成的双电层电容器彼此以不同的相位连续充电和放电,从而在板之间产生交流电流。我们使用电阻-电容电路模型来解释实验结果。这一观察结果可能对构建未来的微流体发电系统有用。