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Non -contact and liquid-liquid interfacing triboelectric nanogenerator for self-powered water/liquid level sensing

机译:用于自动水/液位传感的非接触和液液接口摩擦纳米料

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摘要

Triboelectric nanogenerators (TENG) based on liquid-solid or solid-solid contact have attracted much attention in sensing applications recently. However, the stain caused from external environment and high friction over triboelectric interface are two important issues yet to be solved. To address these issues, a novel magnetic field assisted non-contact TENG is designed by driving the motion of ferrofluid in a sealed tube under an external magnetic field without direct contact. The as-designed TENG can separate the external mechanical motion from the inner triboelectric process, thereby solving the potential stain problem over the triboelectric interface from external environment. Furthermore, a lubricant oil layer is introduced between ferrofluid and substrate to construct a liquid-liquid triboelectric interface, which facilitates the sliding behavior of ferrofluid. This design helps to extend the range of linear relationship between triboelectric current peak value and the ferrofluid motion velocity over its surface, thereby breaking the motion velocity measurement limit of TENG as a velocity sensor. Finally, its potential application is demonstrated as a self-powered water/liquid level sensor. This work provides a novel type of non-contact TENG, and shows triboelectrification on liquid-liquid contact. The novel TENG could be further applied as a highly sensitive sensor in harsh environment.
机译:基于液体固体或固体固体接触的摩擦纳米能器(滕)最近引起了传感应用的许多关注。然而,由外部环境引起的污渍和摩擦电接口的高摩擦是尚未解决的两个重要问题。为了解决这些问题,通过在不直接接触的外部磁场下在外部磁场下驱动铁磁流体在密封管中的运动,设计了一种新的磁场辅助非接触腾。设计的腾腾可以将外部机械运动与内部摩擦工艺分开,从而解决来自外部环境的摩擦电界面的潜在污渍问题。此外,在铁磁流体和基板之间引入润滑油层以构建液体摩擦界面,其促进了铁磁流体的滑动行为。该设计有助于在其表面上延长摩擦电流峰值和铁磁流体运动速度之间的线性关系的范围,从而破坏Teng作为速度传感器的运动速度测量极限。最后,其潜在应用被证明为自动水/液位传感器。这项工作提供了一种新颖的非联系腾,并在液体液体接触上显示摩擦力。新颖的滕可以进一步应用于恶劣环境中的高度敏感传感器。

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