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Contacting paper-based supercapacitors to printed electronics on paper substrates

机译:将纸基超级电容器与纸质基板上的印刷电子产品相接触

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摘要

Hybrid printed electronics, in which printed structures and silicon-based components co-exist will likely be among the first commercial solutions. In this case the paper substrate acts much in the same way as circuit boards, containing conductive tracks and acting as a carrier for the electrical components. It is important to consider the contacting of the components to be able to produce low resistance electrical contacts to the conductive tracks. Supercapacitors are able to deliver a large amount of current in a short time and are a good option for short term energy storage and if the printed product is to be used only one, or a few times, it can be the only power source needed. When manufacturing printed electronics, the overall resistance of the printed tracks as well as the contact resistance of the mounted components will add up to the total resistance of the system. A high resistance will cause a voltage drop from the power source to the component. This will waste power that goes to Joule heating and also the voltage and current available to components may be too low to drive them. If the intention is to use a power supply such as batteries or solar cells this becomes a limitation. In this article have been tested several conductive adhesives used to contact paper based supercapacitors to ink jet printed silver tracks on paper. The best adhesive gives about 0.3 Ω per contact, a factor 17 better compared to the worst which gave 5 Ω. The peak power that is possible to take out from a printed system with a flexible battery and super capacitors is about 10 times higher than compared with the same system with only the battery.
机译:混合印刷电子产品(其中印刷结构和基于硅的组件共存)将很可能是最早的商业解决方案之一。在这种情况下,纸质基材的作用与电路板大致相同,包含导电迹线并用作电气组件的载体。重要的是考虑部件的接触以能够产生与导电迹线的低电阻电接触。超级电容器能够在短时间内提供大量电流,并且是短期能量存储的不错选择,如果印刷产品仅使用一次或几次,它可能是唯一需要的电源。在制造印刷电子产品时,印刷线路的总电阻以及已安装组件的接触电阻将总计为系统的总电阻。高电阻会导致从电源到组件的电压降。这将浪费用于焦耳加热的功率,并且组件可用的电压和电流可能太低而无法驱动它们。如果打算使用电源,例如电池或太阳能电池,则成为限制。在本文中,已经测试了几种导电粘合剂,这些粘合剂用于接触纸基超级电容器,从而在纸上喷墨印刷银迹。最好的粘合剂每次接触可提供约0.3Ω的电阻,比最差的粘合剂可提供5Ω的电阻高17倍。与只有电池的相同系统相比,具有柔性电池和超级电容器的印刷系统可能产生的峰值功率大约高10倍。

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