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Sponge-Templated Macroporous Graphene Network for Piezoelectric ZnO Nanogenerator

机译:用于压电ZnO纳米发生器的海绵模板大孔石墨烯网络

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We report a simple approach to fabricate zinc oxide (ZnO) nanowire based electricity generators on three-dimensional (3D) graphene networks by utilizing a commercial polyurethane (PU) sponge as a structural template. Here, a 3D network of graphene oxide is deposited from solution on the template and then is chemically reduced. Following steps of ZnO nanowire growth, polydimethylsiloxane (PDMS) backfilling and electrode lamination completes the fabrication processes. When compared to conventional generators with 2D planar geometry, the sponge template provides a 3D structure that has a potential to increase power density per unit area. The modified one-pot ZnO synthesis method allows the whole process to be inexpensive and environmentally benign. The nanogenerator yields an open circuit voltage of similar to 0.5 V and short circuit current density of similar to 2 mu A/cm(2), while the output was found to be consistent after similar to 3000 cycles. Finite element analysis of stress distribution showed that external stress is concentrated to deform ZnO nanowires by orders of magnitude compared to surrounding PU and PDMS, in agreement with our experiment. It is shown that the backfilled PDMS plays a crucial role for the stress concentration, which leads to an efficient electricity generation.
机译:我们报告了一种简单的方法,利用商用聚氨酯(PU)海绵作为结构模板,在三维(3D)石墨烯网络上制造基于氧化锌(ZnO)纳米线的发电机。此处,氧化石墨烯的3D网络从溶液中沉积在模板上,然后进行化学还原。遵循ZnO纳米线生长步骤,聚二甲基硅氧烷(PDMS)回填和电极层压完成了制造过程。与具有2D平面几何形状的常规发电机相比,海绵模板提供了3D结构,具有增加单位面积功率密度的潜力。改进的一锅式ZnO合成方法使整个过程便宜且对环境无害。纳米发电机产生的开路电压近似于0.5 V,短路电流密度近似于2μA / cm(2),而在经过类似的3000次循环后,发现其输出是一致的。应力分布的有限元分析表明,与周围的PU和PDMS相比,外部应力集中使ZnO纳米线变形了几个数量级,这与我们的实验一致。结果表明,回填的PDMS对应力集中起着至关重要的作用,从而导致高效发电。

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