Kim Minje, Park Daehoon, Alam Md Mehebub, Lee Sol, Park Pangun, Nah Junghyo
Department of Electrical Engineering , Chungnam National University , Daejeon 34134 , Korea.
ACS Nano. 2019 Apr 23;13(4):4640-4646. doi: 10.1021/acsnano.9b00750. Epub 2019 Mar 20.
Performance enhancement of triboelectric nanogenerators (TENGs) has been largely limited by the relatively low output current density. Thus, extensive research efforts have been made to increase the output current density. In this respect, this work presents a method to effectively increase output current density of TENGs by adopting polarized ferroelectric polymers and MoS composite. Specifically, by compositing bulk MoS flakes with both Nylon-11 and PVDF-TrFE, respectively, charge density of each triboelectric charging surface was significantly increased. In addition, proper polarization of both ferroelectric composite layers has also led to an additional increase in the charge density. A combination of them synergistically increases the surface charge density, generating huge output current and the power output density. By optimizing the fabrication process, the output voltage and current density up to ∼145 V and ∼350 μA/cm are achieved, respectively. Consequently, the TENG exhibits a recordable output power density of ∼50 mW/cm, which is one of the highest output power densities reported to date. The method introduced in this work can greatly increase the output current density of TENGs, facilitating the development of high-performance triboelectric energy harvesting devices.
摩擦纳米发电机(TENGs)的性能提升在很大程度上受到相对较低的输出电流密度的限制。因此,人们已经进行了广泛的研究来提高输出电流密度。在这方面,这项工作提出了一种通过采用极化铁电聚合物和MoS复合材料来有效提高TENGs输出电流密度的方法。具体而言,通过分别将块状MoS薄片与尼龙-11和PVDF-TrFE复合,每个摩擦充电表面的电荷密度显著增加。此外,两个铁电复合层的适当极化也导致电荷密度进一步增加。它们的组合协同提高了表面电荷密度,产生了巨大的输出电流和功率输出密度。通过优化制造工艺,分别实现了高达约145 V和约350 μA/cm的输出电压和电流密度。因此,该TENG展现出约50 mW/cm的可记录输出功率密度,这是迄今为止报道的最高输出功率密度之一。这项工作中介绍的方法可以极大地提高TENGs的输出电流密度,促进高性能摩擦电能量收集装置的发展。