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Effects of mechanical deformation on energy conversion efficiency of piezoelectric nanogenerators

机译:机械变形对压电纳米发电机能量转换效率的影响

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Piezoelectric nanogenerators (PNGs) are capable of converting energy from various mechanical sources into electric energy and have many attractive features such as continuous operation, replenishment and low cost. However, many researchers still have studied novel material synthesis and interfacial controls to improve the power production from PNGs. In this study, we report the energy conversion efficiency (ECE) of PNGs dependent on mechanical deformations such as bending and twisting. Since the output power of PNGs is caused by the mechanical strain of the piezoelectric material, the power production and their ECE is critically dependent on the types of external mechanical deformations. Thus, we examine the output power from PNGs according to bending and twisting. In order to clearly understand the ECE of PNGs in the presence of those external mechanical deformations, we determine the ECE of PNGs by the ratio of output electrical energy and input mechanical energy, where we suggest that the input energy is based only on the strain energy of the piezoelectric layer. We calculate the strain energy of the piezoelectric layer using numerical simulation of bending and twisting of the PNG. Finally, we demonstrate that the ECE of the PNG caused by twisting is much higher than that caused by bending due to the multiple effects of normal and lateral piezoelectric coefficients. Our results thus provide a design direction for PNG systems as high-performance power generators.
机译:压电纳米发电机(PNG)能够将来自各种机械源的能量转换为电能,并具有许多吸引人的功能,例如连续运行,补给和低成本。但是,许多研究人员仍在研究新颖的材料合成和界面控制,以改善PNG的发电能力。在这项研究中,我们报告了P​​NG的能量转换效率(ECE)取决于机械变形(例如弯曲和扭曲)。由于PNG的输出功率是由压电材料的机械应变引起的,因此功率产生及其ECE严重取决于外部机械变形的类型。因此,我们根据弯曲和扭曲检查了PNG的输出功率。为了清楚地了解存在外部机械变形的情况下的PNG的ECE,我们通过输出电能与输入机械能之比确定PNG的ECE,我们建议输入能量仅基于应变能压电层。我们使用PNG弯曲和扭曲的数值模拟来计算压电层的应变能。最后,我们证明,由于法向和横向压电系数的多重影响,扭曲引起的PNG的ECE远高于弯曲引起的ECE。因此,我们的结果为PNG系统作为高性能发电机提供了设计方向。

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