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Design and Fabrication of Addressable Microfluidic Energy Storage MEMS Device

机译:可寻址微流储能MEMS器件的设计与制造

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Design and fabrication of microfluidic energy storage devices that are based on the control of the liquid electrolyte inside a power cell are presented. A 12-cell array of individually addressable reserve microbatteries has been built and tested, yielding $sim$10-mAh capacity per each cell in the array. Lithium and manganese dioxide or carbon monofluoride ($ hbox{Li/MnO}_{2}$ and $hbox{Li/CF}_{rm x}$) have been used as anode and cathode in the battery with $hbox{LiClO}_{4}$ -based electrolyte. Inherent power management capabilities allow for sequential single cell activation based on the external electronic trigger. The design is based on the superlyophobic porous membrane that keeps liquid electrolyte away from the solid electrode materials. When power is needed, battery activation (a single cell or several cells at once) is accomplished via electrowetting trigger that promotes electrolyte permeation through the porous membrane and wetting of the electrode stack, which combines the chemistry together to release stored electrochemical energy. The membrane and associated package elements are prepared using microelectromechanical system fabrication methods that are described in details along with the assembly methods. $hfill$[2011-0312]
机译:提出了基于动力电池内部液体电解质的控制的微流体能量存储装置的设计和制造。已构建并测试了一个由12个电池组成的可单独寻址的备用微电池阵列,该阵列中每个电池的容量为sim $ 10-mAh。锂和二氧化锰或一氟化碳($ hbox {Li / MnO} _ {2} $和$ hbox {Li / CF} _ {rm x} $)已用作电池中的阳极和阴极,其中$ hbox {LiClO } _ {4} $型电解液。固有的电源管理功能允许根据外部电子触发器顺序激活单电池。该设计基于超疏液多孔膜,可将液态电解质与固态电极材料隔离开。当需要电源时,可通过电润湿触发来完成电池激活(一次或一个电池一次),该触发可促进电解质透过多孔膜的渗透和电极堆叠的润湿,将化学物质结合在一起以释放储存的电化学能。膜和相关的包装元件是使用微机电系统制造方法制备的,该方法将详细描述组装方法。 $ hfill $ [2011-0312]

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