Dhakar Lokesh, Gudla Sudeep, Shan Xuechuan, Wang Zhiping, Tay Francis Eng Hock, Heng Chun-Huat, Lee Chengkuo
Department of Electrical and Computer Engineering, National University of Singapore, 4 Engineering Drive 3, Singapore 117576.
NUS Graduate School for Integrative Sciences and Engineering, Centre for Life Sciences (CeLS), 28 Medical Drive, Singapore 117456.
Sci Rep. 2016 Feb 24;6:22253. doi: 10.1038/srep22253.
Triboelectric nanogenerators (TENGs) have emerged as a potential solution for mechanical energy harvesting over conventional mechanisms such as piezoelectric and electromagnetic, due to easy fabrication, high efficiency and wider choice of materials. Traditional fabrication techniques used to realize TENGs involve plasma etching, soft lithography and nanoparticle deposition for higher performance. But lack of truly scalable fabrication processes still remains a critical challenge and bottleneck in the path of bringing TENGs to commercial production. In this paper, we demonstrate fabrication of large scale triboelectric nanogenerator (LS-TENG) using roll-to-roll ultraviolet embossing to pattern polyethylene terephthalate sheets. These LS-TENGs can be used to harvest energy from human motion and vehicle motion from embedded devices in floors and roads, respectively. LS-TENG generated a power density of 62.5 mW m(-2). Using roll-to-roll processing technique, we also demonstrate a large scale triboelectric pressure sensor array with pressure detection sensitivity of 1.33 V kPa(-1). The large scale pressure sensor array has applications in self-powered motion tracking, posture monitoring and electronic skin applications. This work demonstrates scalable fabrication of TENGs and self-powered pressure sensor arrays, which will lead to extremely low cost and bring them closer to commercial production.
摩擦纳米发电机(TENGs)已成为一种比压电和电磁等传统机制更具潜力的机械能收集解决方案,因为其易于制造、效率高且材料选择范围更广。用于实现TENGs的传统制造技术包括等离子体蚀刻、软光刻和纳米颗粒沉积以实现更高性能。但缺乏真正可扩展的制造工艺仍然是将TENGs推向商业生产道路上的关键挑战和瓶颈。在本文中,我们展示了使用卷对卷紫外压印对聚对苯二甲酸乙二酯片材进行图案化来制造大规模摩擦纳米发电机(LS-TENG)。这些LS-TENGs可分别用于从人体运动以及地板和道路中的嵌入式设备的车辆运动中收集能量。LS-TENG产生的功率密度为62.5 mW m(-2)。使用卷对卷加工技术,我们还展示了一种压力检测灵敏度为1.33 V kPa(-1)的大规模摩擦压力传感器阵列。该大规模压力传感器阵列可应用于自供电运动跟踪、姿势监测和电子皮肤应用。这项工作展示了TENGs和自供电压力传感器阵列的可扩展制造,这将带来极低的成本并使其更接近商业生产。