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A Micropillar-Assisted Versatile Strategy for Highly Sensitive and Efficient Triboelectric Energy Generation under In-Plane Stimuli

机译:平面刺激下微柱辅助多功能策略可产生高灵敏高效的摩擦电能

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摘要

For the application of portable and wearable devices, the development of energy harvesters sensitive to various types of local and subtle mechanical displacements is essential. One of the most abundant but difficult-to-harvest mechanical energies in everyday life is the in-plane kinetic energy that arises from a rubbing motion. Here, an efficient method is proposed to generate electrical energy from tiny horizontal forces by laminating microstructures on a conventional triboelectric nanogenerator (TENG). The microhairy structures serve to induce contact friction between the two dielectric materials, driven by reversible mechanical bending when a contact rubbing pressure or noncontact airflow is applied in the horizontal direction. Compared to TENG devices without microstructures, the introduction of microstructures greatly enhances the energy harvesting in the same situation. In addition, the TENG device with micropillars can generate electrical output under tiny mechanical variations (<0.2 Pa) induced by a local deformation below individual micropillars. A high energy-generation capability is demonstrated by rubbing textured samples on the micropillar-structured TENG devices to induce horizontal contact friction. The devices can also efficiently harvest electrical energy from noncontact fluidic airflow. By assembling the microhairy structures on a conventional TENG, more complex and realistic mechanical motion can be harvested.
机译:对于便携式和可穿戴设备的应用,必须开发对各种类型的局部和细微机械位移敏感的能量收集器。日常生活中最丰富但难于收获的机械能之一是由摩擦运动产生的面内动能。在这里,提出了一种有效的方法,通过在常规摩擦电纳米发电机(TENG)上层压微结构,从微小的水平力产生电能。当在水平方向施加接触摩擦压力或非接触气流时,微毛结构用于在两种介电材料之间引起接触摩擦,该摩擦由可逆的机械弯曲驱动。与没有微结构的TENG装置相比,微结构的引入大大提高了相同情况下的能量收集。此外,带有微柱的TENG装置可以在单个微柱下方的局部变形引起的微小机械变化(<0.2 Pa)下产生电输出。通过在微柱结构的TENG装置上摩擦纹理化样本以引起水平接触摩擦,证明了其具有高能量产生能力。该设备还可以从非接触式流体气流中有效地收集电能。通过在常规的TENG上组装微毛结构,可以收获更加复杂和逼真的机械运动。

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