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All-in-One Piezo-Triboelectric Energy Harvester Module Based on Piezoceramic Nanofibers for Wearable Devices

机译:基于压电陶瓷纳米纤维的一体式压电摩擦能收割机模块,可穿戴装置

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An all-in-one energy harvester module comprising a top piezoelectric layer, a bottom piezoelectric layer, and a middle triboelectric layer was fabricated based on flexible piezoceramic nanofibers to serve as a power source for wearable devices. The top and bottom piezoelectric layers were manufactured by modularizing electrospun piezoceramic nanofibers with an interdigitated electrode, and the energy harvesting characteristics were maximized by laminating the single modules in z-axis array arrangements. The triboelectric layer was manufactured by attaching polydimethylsiloxane on both sides of an electrode layer, and the energy harvesting characteristics were controlled according to the surface roughness of the triboelectric modules. The output voltages of the individual energy harvester modules of the all-in-one module were individually or integrally measured by hand pressing the lower and upper parts of the module. The all-in-one energy harvester module generated a maximum voltage (power) of 253 V (3.8 mW), and the time required to charge a 0.1 mu F capacitor to 25 V was 40 s. The results of a simulated energy harvesting experiment conducted on the all-in-one energy harvester module showed that 42 LED bulbs arranged in the shape of the "KICET" logo could be turned on in real time without charging, and a mini fan consuming a power of 3.5 W was operated after charging a 10 mu F capacitor for 250 s. This work shows the potential of the all-in-one module as an ecofriendly flexible energy harvester for operating wearable devices.
机译:基于柔性压电陶瓷纳米纤维制造包括顶部压电层,底部压电层和中间摩擦电层的一体化能量收割机模块,以用作可穿戴装置的电源。顶部和底部压电层通过用互联电极模块化Electromizing压电母纳米纤维来制造,通过在Z轴阵列布置中层叠单个模块来最大化能量收集特性。通过将聚二甲基硅氧烷连接在电极层的两侧,并根据摩擦电模块的表面粗糙度来控制摩擦电层。通过手按压模块的下部和上部,单独地或一体地测量一体化模块的各个能量收割机模块的输出电压。一体化的能量收集模块产生了253 V(3.8mW)的最大电压(功率),并且为0.1μF电容器充电至25V的时间为40秒。在一体化能量收集模块上进行的模拟能量收集实验结果表明,42个LED灯泡布置在“KICET”标志的形状中,可以实时打开,无需充电,并且迷你粉丝消耗在充电10 mu f电容器后,在250秒充电后运行3.5W的功率。这项工作显示了一体化模块的潜力,作为用于操作可穿戴设备的Ecofriendly灵活的能源收割机。

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