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Impact of Rough Surface Morphology of Diluted Poly-DiMethyl-Siloxane (PDMS) Polymer Film on Triboelectric Energy Harvester Performance

机译:稀释的聚二甲基硅氧烷(PDMS)聚合物薄膜的粗糙表面形态对摩擦电能收集器性能的影响

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摘要

In this paper, impact of rough surface formed of diluted Poly-DiMethyl-Siloxane (PDMS) polymer film as one of the tribo layer, on performance of Triboelectric Energy Harvester (TEH) device is demonstrated. A parallel plate vertical-separation mode type TEH is fabricated in which tribo-pair, metal-dielectric is implemented utilizing copper as metal and PDMS polymer with altered surface morphology, as a dielectric film. FR4 substrate with single side copper clad is used to realize bottom electrode, on which dielectric tribo layer is implemented with diluted PDMS formed by mixing 25wt% water in Dow Corning 10:1 PDMS solution to attain the increased surface roughness. Top electrode is a cantilever structure implemented utilising $50 mu$m thin copper foil. Mechanical energy in the form of vibrations is provided on the top of cantilever structure. The device measurements are carried out using DSO (digital oscilloscope), which showed the peak output voltage of 33.6V. As proof of concept, device is demonstrated in a system by connecting to 26 serially connected LEDs (light emitting diodes) and all LEDs were glowing on providing the vibrational energy with manual tapping on the TEH device.
机译:本文展示了稀释的聚二甲基硅氧烷(PDMS)聚合物膜(作为摩擦层之一)形成的粗糙表面对摩擦电能量收集器(TEH)设备性能的影响。制备平行板垂直分离模式类型的TEH,其中利用铜作为金属和具有改变的表面形态的PDMS聚合物作为电介质膜来实现摩擦对金属介电体。使用具有单面覆铜的FR4基板来实现底部电极,在其底部的电介质摩擦层上采用稀释的PDMS,该稀释的PDMS是通过在道康宁10:1 PDMS溶液中混合25wt%的水而形成的,以获得增加的表面粗糙度。顶部电极是一种悬臂结构,利用50微米的薄铜箔实现。悬臂结构的顶部提供了振动形式的机械能。使用DSO(数字示波器)进行器件测量,其峰值输出电压为33.6V。作为概念验证,通过在系统上连接26个串联的LED(发光二极管)来演示该设备,并且在手动敲击TEH设备时,所有LED均在发光以提供振动能量时发光。

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