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用于实现下一代物联网应用的摩擦电纳米发电机及混合系统。

Triboelectric Nanogenerators and Hybridized Systems for Enabling Next-Generation IoT Applications.

作者信息

Shi Qiongfeng, Sun Zhongda, Zhang Zixuan, Lee Chengkuo

机构信息

Department of Electrical & Computer Engineering, National University of Singapore, 4 Engineering Drive 3, Singapore, Singapore 117583.

Center for Intelligent Sensors and MEMS, National University of Singapore, 4 Engineering Drive 3, Singapore, Singapore 117583.

出版信息

Research (Wash D C). 2021 Feb 26;2021:6849171. doi: 10.34133/2021/6849171. eCollection 2021.

Abstract

In the past few years, triboelectric nanogenerator-based (TENG-based) hybrid generators and systems have experienced a widespread and flourishing development, ranging among almost every aspect of our lives, e.g., from industry to consumer, outdoor to indoor, and wearable to implantable applications. Although TENG technology has been extensively investigated for mechanical energy harvesting, most developed TENGs still have limitations of small output current, unstable power generation, and low energy utilization rate of multisource energies. To harvest the ubiquitous/coexisted energy forms including mechanical, thermal, and solar energy simultaneously, a promising direction is to integrate TENG with other transducing mechanisms, e.g., electromagnetic generator, piezoelectric nanogenerator, pyroelectric nanogenerator, thermoelectric generator, and solar cell, forming the hybrid generator for synergetic single-source and multisource energy harvesting. The resultant TENG-based hybrid generators utilizing integrated transducing mechanisms are able to compensate for the shortcomings of each mechanism and overcome the above limitations, toward achieving a maximum, reliable, and stable output generation. Hence, in this review, we systematically introduce the key technologies of the TENG-based hybrid generators and hybridized systems, in the aspects of operation principles, structure designs, optimization strategies, power management, and system integration. The recent progress of TENG-based hybrid generators and hybridized systems for the outdoor, indoor, wearable, and implantable applications is also provided. Lastly, we discuss our perspectives on the future development trend of hybrid generators and hybridized systems in environmental monitoring, human activity sensation, human-machine interaction, smart home, healthcare, wearables, implants, robotics, Internet of things (IoT), and many other fields.

摘要

在过去几年中,基于摩擦纳米发电机(TENG)的混合发电机及系统经历了广泛且蓬勃的发展,几乎涵盖了我们生活的方方面面,例如从工业到消费领域,从户外到室内,以及从可穿戴应用到植入式应用。尽管TENG技术已被广泛研究用于机械能收集,但大多数已开发的TENG仍存在输出电流小、发电不稳定以及多源能量利用率低等局限性。为了同时收集包括机械、热和太阳能在内的无处不在/共存的能量形式,一个有前景的方向是将TENG与其他转换机制集成,例如电磁发电机、压电纳米发电机、热释电纳米发电机、热电发电机和太阳能电池,形成用于协同单源和多源能量收集的混合发电机。利用集成转换机制的所得基于TENG的混合发电机能够弥补每种机制的缺点并克服上述局限性,以实现最大、可靠和稳定的输出发电。因此,在本综述中,我们系统地介绍了基于TENG的混合发电机和混合系统的关键技术,包括工作原理、结构设计、优化策略、电源管理和系统集成等方面。还介绍了基于TENG的混合发电机和混合系统在户外、室内、可穿戴和植入式应用方面的最新进展。最后,我们讨论了我们对混合发电机和混合系统在环境监测、人体活动感知、人机交互、智能家居、医疗保健、可穿戴设备、植入物、机器人技术、物联网(IoT)以及许多其他领域未来发展趋势的看法。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/27d1/7937188/0ac127c2a4b5/RESEARCH2021-6849171.001.jpg

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