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Facile roughness fabrications and their roughness effects on electrical outputs of the triboelectric nanogenerator

机译:Facile粗糙度制造及其对摩擦纳米电器电输出的粗糙度影响

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摘要

This study introduced a new facile roughness fabrication method for the triboelectric nanogenerator (TENG). Solid salt was applied to induce the macroscopic triangle-like roughness on material surface in which the density could be controlled. Additionally, the roughness effect on the electrical property of TENG was investigated. Three roughness fabrication techniques were designed to make textures for TENG materials by producing certain roughness formations. The highest electrical outputs (voltage and current) were found in the device designed for matching the roughness textures. Both output voltage and current increased by about 3 times when compared with the non-textured device. The increase of electrical outputs of TENG was due to the increase of roughness area, leading to more triboelectric charge generation. This work presented a new feasible fabrication technique and suggested a scheme to engineer the roughness for enhancing the TENG performance, which is crucial for TENG-based device development and practical use in the future.
机译:本研究介绍了摩擦纳米料(Teng)的新的粗糙度制造方法。施用固体盐以在材料表面上诱导宏观三角形粗糙度,其中可以控制密度。另外,研究了对滕的电产的粗糙度影响。设计了三种粗糙度制造技术,通过产生某些粗糙度形成来制造滕材料的纹理。在设计用于匹配粗糙度纹理的设备中找到了最高电输出(电压和电流)。与非纹理设备相比,输出电压和电流均增加约3次。滕电输出的增加是由于粗糙区域的增加,导致更具摩擦电荷产生。这项工作提出了一种新的可行性制造技术,并提出了一种工程师,为提高腾腾性能的粗糙度,这对于未来的腾腾的设备开发和实际应用至关重要。

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