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A Wireless Triboelectric Nanogenerator

机译:无线摩擦电纳米发电机

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摘要

A new wireless paradigm for harvesting mechanical energy via a 3D-printed wireless triboelectric nanogenerator (W-TENG) comprised of an ecofriendly graphene polylactic acid (gPLA) nanocomposite and Teflon is demonstrated. The W-TENG generates very high output voltages 2 kV with a strong electric field that enables the wireless transmission of harvested energy over a distance of 3 m. The W-TENG exhibited an instantaneous peak power up to 70 mW that could be wirelessly transmitted for storage into a capacitor obviating the need for hard-wiring or additional circuitry. Furthermore, the use of W-TENG for wireless and secure actuation of smart-home applications such as smart tint windows, temperature sensors, liquid crystal displays, and security alarms either with a single or a specific user-defined passcode of mechanical pulses (e.g., Fibonacci sequence) is demonstrated. The scalable additive manufacturing approach for gPLA-based W-TENGs, along with their high electrical output and unprecedented wireless applications, is poised for revolutionizing the present mechanical energy harvesting technologies.
机译:通过3D打印的无线摩擦电纳米发电机(W-TENG)收集了一种新的无线范式,该无线范式由生态友好的石墨烯聚乳酸(gPLA)纳米复合材料和特富龙组成。 W-TENG产生强于2kV的非常高的输出电压,并具有强大的电场,能够在3 m的距离内无线传输收集的能量。 W-TENG的瞬时峰值功率高达70 mW,可以无线传输以存储到电容器中,从而无需硬接线或附加电路。此外,使用W-TENG可以通过单个或特定的用户定义的机械脉冲密码(例如,智能色调窗口,温度传感器,液晶显示器和安全警报)以无线方式安全启动智能家居应用程序,例如,斐波那契数列)进行了演示。基于gPLA的W-TENG的可扩展增材制造方法,以及其高电输出和空前的无线应用,有望彻底改变当前的机械能量收集技术。

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