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A super compact self-powered device based on paper-like supercapacitors

机译:基于纸张超级电容器的超紧凑型自动装置

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To achieve the direct storage of harvested energy, energy harvesting and storage techniques should be further developed separately, but the integration of these two areas should also be considered. In this work, by attaching a piece of Al foil and qualitative filter paper onto a paper-like supercapacitor (SC), a super compact self-powered supercapacitor (SPSC) was successfully fabricated. The hybrid device can be charged to more than 0.7 V when a wet swab is used, and this easy operation means that it can be charged when touched by a finger. The self-powered property is based on the effective integration of a metal-air cell and SC, allowing the dual-function electrodes to convert chemical energy into electric energy and store it in the SC directly. Our SPSC demonstrates superior output performance when compared to a single metal-air cell and can power a vibrating motor after the self-powered process. A higher output voltage can be achieved by assembling super compact self-powered supercapacitors (SCSCs) in series. This SPSC provides a new reference in the study of energy technology and selfpowered wearable electronics.
机译:为了实现收获的能量的直接存储,应分开进一步开发能量收集和储存技术,但也应考虑这两个区域的整合。在这项工作中,通过将一块Al箔和定性滤纸附接到纸张的超级电容器(SC)上,成功制造了一种超紧凑的自动超级电容器(SPSC)。当使用湿式拭子时,混合动力装置可以充电至大于0.7V,并且这种易操作意味着当由手指触摸时可以充电。自动特性基于金属空气电池和SC的有效整合,使双功能电极将化学能转换为电能并直接将其存放在SC中。与单个金属空气电池相比,我们的SPSC显示出卓越的输出性能,并且可以在自动过程之后为振动电机供电。通过组装超紧凑型自动超级电容器(SCSCs)串联来实现更高的输出电压。该SPSC在能源技术和自驾动电子研究中提供了新的参考。

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