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Mechanically Active Transducing Element Based on Solid-Liquid Triboelectric Nanogenerator for Self-Powered Sensing

机译:基于固液摩擦纳米液的机械活性转换元件自动传感

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摘要

As power generation from the electronically active materials has been made remarkable progress to scavenge the ambient mechanical energy, harnessing energy from fluidics with liquid-solid contact electrification charging from the flow has become new capabilities to be applied as the sensory module. In this paper, a mechanical fluidic nanogenerator based on solid-liquid contact triboelectrification is demonstrated in which liquid electricity signal can be transferred into from the mechanical motion. This simply designed device is composed of Polytetrafluoroethylene (PTFE) tube and copper electrodes at both ends. To evaluate the effectiveness of the device, deionized water (DI) is poured into the tube and the movement is controlled by air flow from the internal volume difference of the rotating mechanism. The peak current value of the mechanical active transducing element based triboelectric nanogenerator (MAT-TENG) signal is used for analyzing movement speed. Speed gradient was applied for back and forth motion of the liquid column with a stable peak of short circuit current and open circuit voltage was about 0.23 mu A and 2.31 V, respectively, at the length of the motion amplitude of 23 mm and frequency of 1 Hz. Finally, the flexible MAT-TENG has shown distinct response with the change of the motion length and speed of the liquid and the results have been achieved with better linearity similar to R-2 = 0.99. Therefore, the velocity transducing can be very effective in the practical applications of the TENGs based for self-powered sensing.
机译:随着来自电子活性材料的发电已经取得了显着的进展,以清除环境机械能,利用来自流量的流体利用来自流量的流动性,从流动中充电变成了作为感官模块的新能力。在本文中,证明了基于固液触点摩擦测定的机械流体纳米液,其中液体电信号可以从机械运动转移到。这种简单的设计装置由两端的聚四氟乙烯(PTFE)管和铜电极组成。为了评估器件的有效性,将去离子水(DI)倒入管中,并且通过从旋转机构的内部容积差的空气流量来控制运动。基于机械有源转换元件的摩擦纳米电磁体(MAT-Teng)信号的峰值电流值用于分析运动速度。速度梯度施加液柱的前后运动,短路电流稳定的峰值,开路电压分别为约0.23μA和2.31V,在23 mm的运动幅度的长度和1赫兹。最后,柔性Mat-teng已经显示出与液体运动长度和速度的变化的不同响应,并且通过与R-2 = 0.99类似的线性度实现了结果。因此,在基于自动传感的龄的实际应用中,速度传输可以非常有效。

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