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Synthesis of ZnO rod arrays on aluminum recyclable paper and effect of rod size on power density of eco-friendly nanogenerators

机译:ZnO棒阵列的铝可回收纸的合成及棒尺寸对生态型纳米电力密度的影响

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In this work, we demonstrated a novel and effective approach on the use of low-cost electrodes, an eco-friendly substrate and zinc oxide (ZnO) micro or nanorods (MRs or NRs, respectively) for building triboelectric devices (TENGs). The reported strategy focuses on using low-cost materials and fabrication processes. For the first time and without any pre-treatment, an aluminum recyclable paper from the milk carton (named ARP) was used as a substrate and TENG bottom electrode. A systematic study on the growing of ZnO structures on ARP by chemical bath deposition has been carried out. We found that the ZnO rods size, and resistivity of the TENG upper electrode considerably influence the power density of the device. Such sustainable, low-priced ZnO-based TENGs can produce up to 1.6 mu W/cm(2) output power density when operated at 50 Hz. The fabrication of an eco-friendly nanogenerator demonstrates the possibility of manufacturing low-cost, flexible, and large-area energy harvesting devices for future applications.
机译:在这项工作中,我们证明了一种关于使用低成本电极,生态友好型基板和氧化锌(ZnO)微型或纳米榫(MRS或NRS)用于建立摩擦电装置(Tengs)的新颖有效方法。报告的战略重点介绍使用低成本的材料和制造过程。在没有任何预处理的情况下,使用来自牛奶纸浆(命名ARP)的铝可回收纸作为基材和滕底电极。通过化学浴沉积进行了对ZnO结构在ARP上生长的系统研究。我们发现ZnO棒尺寸和腾腾上电极的电阻率显着影响了装置的功率密度。这种可持续的低价基于ZnO的痛苦可以在50Hz操作时产生高达1.6μW/ cm(2)输出功率密度。生态友好型纳米液的制造证明了用于未来应用的低成本,柔性和大面积能量收集装置的可能性。

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