Liu Mengjiao, Zhang Xin, Xin Yue, Guo Dongxu, Hu Guangkai, Ma Yifei, Yu Bin, Huang Tao, Ji Chengchang, Zhu Meifang, Yu Hao
State Key Laboratory for Modification of Chemical Fibers and Polymer Materials, College of Materials Science and Engineering, Donghua University, Shanghai, 201620, China.
College of Information Science and Technology, Donghua University, Shanghai, 201620, China.
Adv Sci (Weinh). 2024 Jul;11(28):e2401636. doi: 10.1002/advs.202401636. Epub 2024 May 13.
Triboelectric nanogenerators (TENGs), a promising strategy for harvesting distributed low-quality power sources, face inevitable bottlenecks regarding long-term abrasion and poor durability. Herein, both issues are addressed by selecting an earthworm-inspired self-replenishing bionic film (ERB) as the tribo-material of sliding-freestanding TENGs (SF-TENGs), it consists of an interconnected 3D porous network structure capable of storing and releasing lubricant under cyclic mechanical stimuli. Thanks to the superiority of self-replenishing property, there is no need for periodic replenishment and accurate content control of lubricant over the interfacial-lubricating SF-TENGs based on dense tribo-layers. Additionally, an SF-TENG based on ERB film (ERB-TENG) demonstrates remarkable output stability with only a slight attenuation of 1% after continuous operation for 100 000 cycles. Moreover, the ERB-TENG displays a distinguished anti-wear property, exhibiting no distinct abrasion with an ultra-low coefficient of friction (0.077) and maintaining output stability over a prolonged period of 35 days. Furthermore, integration with an energy management circuit enables the ERB-TENG to achieve a 39-fold boost in charging speed. This work proposes a creative approach to enhance the durability and extend the lifespan of TENG devices, which is also successfully applied to wind energy harvesting and intelligent sports monitoring.
摩擦纳米发电机(TENGs)作为一种收集分布式低质量电源的有前景的策略,在长期磨损和耐久性差方面面临不可避免的瓶颈。在此,通过选择受蚯蚓启发的自补充仿生薄膜(ERB)作为滑动自支撑TENGs(SF-TENGs)的摩擦材料来解决这两个问题,它由一个相互连接的三维多孔网络结构组成,能够在循环机械刺激下储存和释放润滑剂。由于自补充特性的优势,基于致密摩擦层的界面润滑SF-TENGs无需定期补充润滑剂和精确控制其含量。此外,基于ERB薄膜的SF-TENG(ERB-TENG)表现出显著的输出稳定性,在连续运行100000次循环后仅略有1%的衰减。此外,ERB-TENG具有出色的抗磨损性能,摩擦系数超低(0.077),无明显磨损,并在35天的长时间内保持输出稳定性。此外,与能量管理电路集成使ERB-TENG的充电速度提高了39倍。这项工作提出了一种创新方法来提高TENG设备的耐久性和延长其使用寿命,该方法还成功应用于风能收集和智能运动监测。