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Photovoltaically rechargeable fuel cell accumulator for energy self-sufficient microsystems

机译:用于能量自给式微系统的光伏可充电燃料电池累加器

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Energy self-sufficient microsystems equipped with a micro energy harvester also need an adequate energy storage device with a high energy density to guarantee reliable and long-lasting operation. A combined system which can tap and store ambient energy as well as deliver constant and continuous electrical power is desirable. Therefore we have developed a novel fuel cell type accumulator with an integrated photoactive ceramic which allows photovoltaic charging. The button cell shaped system exhibits a metal hydride (MH) storage of high energy density and a semiconductor consisting of a pressed strontium titanate (STO) ceramic. We have demonstrated that the MH storage can be photocharged upon illumination and subsequently discharged by using an external load. Furthermore, we have developed electrophoretically deposited STO films which have shown much higher photo activity than pressed bulk ceramics.
机译:能量自给式微系统配备微型能量收割机还需要具有高能量密度的足够的能量存储装置,以确保可靠和持久的操作。 可以利用和存储环境能量的组合系统以及提供恒定和连续的电力。 因此,我们开发了一种具有集成光活陶瓷的新型燃料电池型蓄能器,其允许光伏充电。 按钮电池形系统表现出高能量密度的金属氢化物(MH)储存和由压制钛酸锶(STO)陶瓷组成的半导体。 我们已经证明了MH存储器可以在照明时进行光电,随后通过使用外部负载排出。 此外,我们已经开发了电泳沉积的STO膜,其示出了比压制散装陶瓷更高的照片活性。

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