Nanomaterials and System Lab, Department of Mechatronics Engineering, Jeju National University, Jeju 690-756, Republic of Korea.
Nanoscale. 2017 Jul 20;9(28):9818-9824. doi: 10.1039/c7nr00110j.
A Smart Mobile Pouch Triboelectric Nanogenerator (SMP-TENG) is introduced as a promising eco-friendly approach for scavenging biomechanical energy for powering next generation intelligent devices and smart phones. This is a cost-effective and robust method for harvesting energy from human motion, by utilizing worn fabrics as a contact material. The SMP-TENG is capable of harvesting energy in two operational modes: lateral sliding and vertical contact and separation. Moreover, the SMP-TENG can also act as a self-powered emergency flashlight and self-powered pedometer during normal human motion. A wireless power transmission setup integrated with SMP-TENG is demonstrated. This upgrades the traditional energy harvesting device into a self-powered wireless power transfer SMP-TENG. The wirelessly transferred power can be used to charge a Li-ion battery and light LEDs. The SMP-TENG opens a wide range of opportunities in the field of self-powered devices and low maintenance energy harvesting systems for portable and wearable electronic gadgets.
智能移动袋式摩擦纳米发电机 (SMP-TENG) 被引入作为一种有前途的环保方法,用于为下一代智能设备和智能手机提供动力,以获取生物力学能量。这是一种从人体运动中获取能量的具有成本效益且强大的方法,利用磨损的织物作为接触材料。SMP-TENG 能够在两种工作模式下进行能量收集:横向滑动和垂直接触和分离。此外,SMP-TENG 还可以在人体正常运动期间充当自供电应急手电筒和自供电计步器。展示了一种集成 SMP-TENG 的无线功率传输设置。这将传统的能量收集装置升级为自供电的无线功率传输 SMP-TENG。无线传输的功率可用于为锂离子电池和 LED 灯充电。SMP-TENG 为自供电设备和低维护能源收集系统开辟了广泛的机会,适用于便携式和可穿戴电子设备。