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An all-printed 3D-Zn/Fe_3O_4 paper battery

机译:全印3D-Zn / Fe_3O_4纸电池

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A simple, low cost, and lightweight three-dimensional (3D) primary alkaline Zn/Fe3O4 origami-battery fabricated from Whatman 1 paper was developed. The battery was created using printed wax to define the hydrophobic and hydrophilic barriers and active electrocatalytic materials for fabricating the electrodes. The boat-shaped 3D-battery consisted of two screen-printed Zn/Fe3O4 batteries connected in series that were activated with a small volume of aqueous KOH solution. The metallic electrodes were first characterized outside the folded battery using electrochemical techniques. Subsequently, the electrodes and separator were assembled together in a triangle-shaped battery resembling the main structure of the boat-shaped 3D-device and this triangle-shaped battery was further optimized. The addition of water triggered the activation of the 3D battery delivering a maximum current and power of 7 mA and 3 mW, respectively. The 3D-Zn/Fe3O4-battery displayed an OCP of 2.2 V and a maximum current and power of 22 mA and 7.5 mW, respectively, in the presence of 6 M KOH electrolyte. These results demonstrate the potential of 3D origami-based structures and Zn/Fe3O4 batteries as an alternative low cost energy source to power portable devices.
机译:开发了一种由Whatman 1纸制造的简单,低成本,轻便的三维(3D)碱性碱性Zn / Fe3O4折纸电池。使用印刷蜡定义疏水性和亲水性阻隔层以及用于制造电极的活性电催化材料,制成电池。船形3D电池由两个串联连接的丝网印刷Zn / Fe3O4电池组成,这些电池由少量KOH水溶液激活。首先使用电化学技术在折叠电池的外部表征金属电极。随后,将电极和隔板组装到类似于船形3D设备的主要结构的三角形电池中,并且进一步优化了该三角形电池。加水触发了3D电池的激活,分别提供了7 mA和3 mW的最大电流和功率。在6 M KOH电解质存在的情况下,3D-Zn / Fe3O4-电池的OCP值为2.2 V,最大电流和功率分别为22 mA和7.5 mW。这些结果证明了基于3D折纸的结构和Zn / Fe3O4电池作为为便携式设备供电的替代低成本能源的潜力。

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