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Integrated Micro-power Source Based On A Micro-silicon Fuel Cell And A Micro Electromechanical System Hydrogen Generator

机译:基于微硅燃料电池和微机电系统制氢机的集成微电源

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摘要

Micro-power sources that are comparable to or smaller than the size of the micro-devices needing power are needed for many applications. This paper introduces an integrated millimeter scale power source based on a micro-silicon fuel cell and a MEMS hydrogen generator, with passive control. The integrated devices are fabricated from silicon wafers using conventional MEMS fabrication processes. In this design, the hydrolysis reaction of calcium hydride and water is used to generate hydrogen, and the hydrogen generation rate is controlled by a microfluidic self-regulating mechanism, which can control the hydrolysis reaction based on the load. Design, fabrication, and testing results of a prototype system are described. One of the devices can produce 90 μW for 6h with a maximum power of 0.17 mW, and another one can produce 30 μW for 26 h with a total energy density of 100 Wh L~(-1).
机译:在许多应用中都需要与需要电源的微型设备相媲美或更小的微型电源。本文介绍了一种基于微硅燃料电池和MEMS氢气发生器并具有被动控制功能的集成毫米级电源。使用常规的MEMS制造工艺从硅晶片制造集成器件。在该设计中,氢化钙与水的水解反应用于生成氢,并且通过微流体自调节机制控制氢的生成速度,该机制可根据负荷来控制水解反应。描述了原型系统的设计,制造和测试结果。其中一个器件可在90小时内产生90μW的功率,最大功率为0.17 mW,而另一个器件则可在30小时内产生30μW的功率,总能量密度为100 Wh L〜(-1)。

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