Department of Mechanical Engineering (Integrated Engineering Program), Kyung Hee University, Yongin, Gyeonggi 17104, South Korea.
Department of Electrical Engineering and Computer Science, Massachusetts Institute of Technology, 77 Massachusetts Avenue, Cambridge, Massachusetts 02139, United States.
ACS Nano. 2023 Jun 27;17(12):11087-11219. doi: 10.1021/acsnano.2c12458. Epub 2023 May 23.
Serious climate changes and energy-related environmental problems are currently critical issues in the world. In order to reduce carbon emissions and save our environment, renewable energy harvesting technologies will serve as a key solution in the near future. Among them, triboelectric nanogenerators (TENGs), which is one of the most promising mechanical energy harvesters by means of contact electrification phenomenon, are explosively developing due to abundant wasting mechanical energy sources and a number of superior advantages in a wide availability and selection of materials, relatively simple device configurations, and low-cost processing. Significant experimental and theoretical efforts have been achieved toward understanding fundamental behaviors and a wide range of demonstrations since its report in 2012. As a result, considerable technological advancement has been exhibited and it advances the timeline of achievement in the proposed roadmap. Now, the technology has reached the stage of prototype development with verification of performance beyond the lab scale environment toward its commercialization. In this review, distinguished authors in the world worked together to summarize the state of the art in theory, materials, devices, systems, circuits, and applications in TENG fields. The great research achievements of researchers in this field around the world over the past decade are expected to play a major role in coming to fruition of unexpectedly accelerated technological advances over the next decade.
当前,气候变化和能源相关的环境问题十分严峻,是全世界共同关注的焦点。为了减少碳排放,保护环境,可再生能源采集技术将成为未来解决问题的关键。在众多可再生能源采集技术中,摩擦起电纳米发电机(TENG)是最有前途的机械能采集技术之一,它基于接触起电现象,由于拥有丰富的废弃机械能资源,同时在材料的广泛可用性和选择性、相对简单的器件结构以及低成本处理等方面具有许多优势,近年来得到了迅猛的发展。自 2012 年问世以来,TENG 在基础行为和广泛应用方面已经取得了显著的实验和理论进展。因此,该技术已经取得了相当大的技术进步,推动了其在预定路线图上的实现时间。目前,该技术已经进入原型开发阶段,其性能已经超越了实验室环境,正在朝着商业化方向发展。在这篇综述中,来自世界各地的杰出作者共同总结了 TENG 领域在理论、材料、器件、系统、电路和应用方面的最新进展。预计未来十年,全世界 TENG 领域的研究人员将取得更多重大研究成果,推动技术加速发展。