Department of Electronic Engineering , Kyung Hee University , 1732 Deogyeong-daero , Giheung-gu, Yongin-Si , Gyeonggi-do 446-701 , South Korea.
ACS Appl Mater Interfaces. 2018 Jul 18;10(28):24181-24192. doi: 10.1021/acsami.8b06295. Epub 2018 Jul 9.
Triboelectric nanogenerator (TENG) technology is an emerging field to harvest various kinds of mechanical energies available in our living environment. Nowadays, for industrial and large-scale area applications, developing the TENG with low device processing cost and high electrical output is a major issue to be resolved. Herein, we designed a TENG with low cost by employing the microgrooved architectured (MGA)-poly(tetrafluoroethylene) (PTFE; Teflon) and aluminum as triboelectric materials with opposite tendencies. Moreover, the MGA-PTFE was fabricated by a single-step, facile, and cost-effective thermal imprinting lithography technique via micropyramidal textured silicon as a master mold, fabricated by a wet-chemical etching method. Therefore, designing the TENG device by following these techniques can definitely reduce its manufacturing cost. Additionally, the electrical output of TENG was enhanced by adjusting the imprinting parameters of MGA-PTFE. Consequently, the MGA-PTFE was optimized at an imprinting pressure and temperature of 5 MPa and 280 °C, respectively. Thus, the TENG with an optimal MGA-PTFE polymer exhibited the highest electrical output. A robustness test of TENG was also performed, and its output power was used to drive light-emitting diodes and portable electronic devices. Finally, the real application of TENG was also examined by employing it as a smart floor and object-falling detector.
摩擦纳米发电机(TENG)技术是一种新兴领域,可用于收集我们生活环境中存在的各种机械能。如今,对于工业和大规模应用,开发具有低成本器件加工和高电能输出的 TENG 是需要解决的主要问题。在这里,我们设计了一种具有低成本的 TENG,采用具有相反趋势的微槽结构(MGA)-聚四氟乙烯(PTFE;特氟龙)和铝作为摩擦电材料。此外,MGA-PTFE 是通过单步、简便且具有成本效益的热压印光刻技术,使用微金字塔纹理硅作为母模制造的,该母模是通过湿法化学蚀刻方法制造的。因此,通过遵循这些技术设计 TENG 设备肯定可以降低其制造成本。此外,通过调整 MGA-PTFE 的压印参数可以增强 TENG 的电输出。因此,MGA-PTFE 在 5 MPa 的压印压力和 280°C 的温度下得到了优化。因此,具有最佳 MGA-PTFE 聚合物的 TENG 表现出了最高的电输出。还对 TENG 的鲁棒性测试进行了测试,并用其输出功率驱动发光二极管和便携式电子设备。最后,还通过将 TENG 用作智能地板和物体掉落探测器来检查其实际应用。