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基于聚合物复合材料的摩擦纳米发电机:最新进展、设计原理及未来展望

Polymer Composite-Based Triboelectric Nanogenerators: Recent Progress, Design Principles, and Future Perspectives.

作者信息

Choi Geon-Ju, Sohn Sang-Hyun, Kim Se-Jin, Park Il-Kyu

机构信息

Department of Materials Science and Engineering, Seoul National University of Science and Technology, Seoul 01811, Republic of Korea.

出版信息

Polymers (Basel). 2025 Jul 17;17(14):1962. doi: 10.3390/polym17141962.

Abstract

The escalating consumption of fossil fuels and the rapid development of portable electronics have increased interest in alternative energy solutions that can sustainably self-power wearable devices. Triboelectric nanogenerators (TENGs), which convert mechanical energy into electricity through contact electrification and electrostatic induction, have emerged as a promising technology due to their high voltage output, lightweight design, and simple fabrication. However, the performance of TENGs is often limited by a low surface charge density, inadequate dielectric properties, and poor charge retention of triboelectric materials. To address these challenges, recent research has focused on the use of polymer composites that incorporate various functional fillers. The filler materials play roles in improving dielectric performance and enhancing mechanical durability, thereby boosting triboelectric output even in harsh environments, while also diminishing charge loss. This review comprehensively examines the role of polymer composite design in TENG performance, with particular emphasis on materials categorized by their triboelectric polarity. Tribo-negative polymers, such as PDMS and PVDF, benefit from filler incorporation and phase engineering to enhance surface charge density and charge retention. By contrast, tribo-positive materials like nylon and cellulose have demonstrated notable improvements in mechanical robustness and environmental stability through composite strategies. The interplay between material selection, surface engineering, and filler design is highlighted as a critical path toward developing high-performance, self-powered TENG systems. Finally, this review discusses the current challenges and future opportunities for advancing TENG technology toward practical and scalable applications.

摘要

化石燃料消耗量的不断增加以及便携式电子产品的迅速发展,使得人们对能够可持续地为可穿戴设备自供电的替代能源解决方案越来越感兴趣。摩擦纳米发电机(TENGs)通过接触起电和静电感应将机械能转化为电能,由于其高电压输出、轻量化设计和简单制造工艺,已成为一项很有前景的技术。然而,TENGs的性能常常受到摩擦电材料表面电荷密度低、介电性能不足和电荷保持性差的限制。为应对这些挑战,近期的研究集中在使用包含各种功能填料的聚合物复合材料上。填料材料在改善介电性能和增强机械耐久性方面发挥作用,从而即使在恶劣环境下也能提高摩擦电输出,同时还能减少电荷损失。本文综述全面考察了聚合物复合材料设计在TENG性能中的作用,特别强调了按摩擦电极性分类的材料。摩擦负极性聚合物,如聚二甲基硅氧烷(PDMS)和聚偏氟乙烯(PVDF),通过加入填料和相工程来提高表面电荷密度和电荷保持性。相比之下,尼龙和纤维素等摩擦正极性材料通过复合策略在机械强度和环境稳定性方面有显著改善。材料选择、表面工程和填料设计之间的相互作用被视为开发高性能自供电TENG系统的关键途径。最后,本文综述讨论了将TENG技术推向实际和可扩展应用所面临的当前挑战和未来机遇。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8b1f/12301013/d1d8667d822f/polymers-17-01962-g002.jpg

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