Department of Electrical Engineering, Chungnam National University, Daejeon, 34134, Korea.
Nanoscale. 2018 Dec 7;10(45):20995-21000. doi: 10.1039/c8nr06530f. Epub 2018 Nov 8.
For the development of high performance triboelectric generators (TENGs), it is required to have facile methods to adjust the triboelectric properties of the friction surfaces. In this work, we present the surface charge density modulation of the photopolymer-ferroelectric nanoparticle composite surface by applying ultraviolet (UV) and electric field. By using the photopolymer, the triboelectric surface property was modulated by exposure to UV. In addition, lithographic surface patterning can be easily adopted to enlarge the frictional surface area as well. Furthermore, the use of the PP allows a facile integration of ferroelectric nanoparticles (NPs) in the form of a nanocomposite structure, which can effectively increase the surface charge density by spontaneous dipole coupling of NPs embedded in the PP layer. As a result, approximately 4-fold higher output power has been achieved by applying this approach. The developed TENGs have also demonstrated superior mechanical durability, generating consistent outputs during 10 cyclic frictional contacts. The approach proposed here is a simple and reliable way to enhance the output performance of TENGs.
为了开发高性能的摩擦电发电机(TENG),需要有一种简便的方法来调节摩擦表面的摩擦电特性。在这项工作中,我们通过施加紫外(UV)光和电场来调制光聚合-铁电纳米粒子复合材料表面的表面电荷密度。通过使用光聚合体,可以通过暴露于 UV 来调节摩擦表面特性。此外,还可以采用光刻表面图案化来轻松地扩大摩擦表面积。此外,使用 PP 可以以纳米复合材料结构的形式方便地集成铁电纳米粒子(NPs),这可以通过嵌入 PP 层中的 NPs 的自发偶极耦合有效地增加表面电荷密度。结果,通过采用这种方法,输出功率提高了约 4 倍。所开发的 TENG 还表现出优异的机械耐久性,在 10 次循环摩擦接触过程中产生一致的输出。这里提出的方法是增强 TENG 输出性能的一种简单可靠的方法。