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Versatile 3-D stacking of 2-D paper-based biobatteries

机译:多功能3-D堆叠的基于纸的生物典型

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We demonstrated a novel fabrication technique of 3-D biobattery packs by folding or stacking 2-D paper-based biobatteries for their series and/or parallel connections. A stackable, high-performance bacteria-powered battery was developed by folding two functional components (i.e. a conductive hydrophilic reservoir as an anode and a solid electron acceptor as a cathode) integrated into a single sheet of chromatography paper. Upon adding one drop of bacteria-containing liquid on the device, bacterial respiration transferred electrons from the organic liquid to the electrode, providing power to an external load. The various battery folding and/or stacking strategies with different series and/or parallel combinations significantly improved the power and current outputs. This battery manufacturing technique on paper can improve performance, simplify fabrication and connection, and revolutionize mass-production of large-scale flexible paper batteries, enabling the development of new types of powered, paper-based electronics.
机译:我们通过折叠或堆叠基于2-D纸的生物解放器的串联和/或并联连接来展示了一种新的三维生物解放包的新颖制造技术。通过折叠两个功能部件(即作为阴极作为阴极作为阴极作为阳极和固体电子受体,作为阳极和固体电子受体的阳极和固体电子受体,开发了可堆叠的高性能细菌动力电池。在装置上添加一滴细菌的液体后,将来自有机液体的细菌呼吸转移到电极,为外部负载提供电力。具有不同系列和/或平行组合的各种电池折叠和/或堆叠策略显着提高了电源和电流输出。这种电池制造技术在纸上可以提高性能,简化制造和连接,并彻底改变大规模柔性纸电池的大规模生产,从而开发了新型的动力,纸质电子产品。

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