Yoon Hong-Joon, Kwak Sung Soo, Kim Seong Min, Kim Sang-Woo
School of Advanced Materials Science and Engineering, Sungkyunkwan University (SKKU), Suwon Gyeonggi-do, Republic of Korea.
Sci Technol Adv Mater. 2020 Sep 28;21(1):683-688. doi: 10.1080/14686996.2020.1800366.
Triboelectric nanogenerators (TENGs) that enable the conversion of a given mechanical energy into electrical energy at high efficiency have been very important in practice. Since the given mechanical energy is involuntarily converted to secondary energy sources (light, heat, and sound during triboelectrification), the significant amount of energy being converted is lost. Various studies have thus been continuously carried out to overcome this issue. Since the first TENGs found in 2012, various developments in TENGs have been made: (1) the mechanical-electrical energy conversion characteristics of potential organic/inorganic material groups have been introduced, (2) the integration into the device structure considering the diversity of mechanical energy, and (3) user friendly and industrial application platforms have been aggressively studied. Despite the remarkable progress and improvement of TENGs, their mechanical-electrical conversion efficiency is still quite low. We therefore need to discover and develop materials that can be converted to improve efficiency. Here, we outline the recent progress made in a group of high polarity triboelectric materials that exploit surface charge density and charge transfer properties. We also review the recent boosting powering TENGs. The aim of this work is to provide insight into the future direction and strategies for highly enhanced powering TENGs through material research.
摩擦纳米发电机(TENGs)能够将给定的机械能高效地转换为电能,在实际应用中非常重要。由于给定的机械能在摩擦起电过程中会不由自主地转换为二次能源(光、热和声),大量被转换的能量会损失掉。因此,人们不断开展各种研究来克服这个问题。自2012年首次发现TENGs以来,TENGs取得了各种进展:(1)引入了潜在有机/无机材料组的机电能量转换特性;(2)考虑机械能的多样性将其集成到器件结构中;(3)积极研究了用户友好型和工业应用平台。尽管TENGs取得了显著进展和改进,但其机电转换效率仍然相当低。因此,我们需要发现和开发能够提高转换效率的材料。在这里,我们概述了一组利用表面电荷密度和电荷转移特性的高极性摩擦电材料的最新进展。我们还回顾了近期增强TENGs供电能力的情况。这项工作的目的是通过材料研究,深入了解未来提高TENGs供电能力的方向和策略。