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用于自修复摩擦纳米发电机的高强度高韧性超分子材料

High-Strength and High-Toughness Supramolecular Materials for Self-Healing Triboelectric Nanogenerator.

作者信息

Yu Ning, Cheng Bingxu, Liu Yang, Wu Wei, Li Robert K Y, Liang Zihui, Cheng Fangchao, Zhao Hui

机构信息

School of Light Industry and Food Engineering, Guangxi University, Nanning, 530004, China.

Jihua Laboratory, Foshan, 528200, China.

出版信息

Small. 2024 Nov;20(47):e2405700. doi: 10.1002/smll.202405700. Epub 2024 Aug 21.

Abstract

The development of self-healing materials provides a new opportunity and challenge for advancing triboelectric nanogenerators (TENGs). However, the low strength and low toughness of self-healing triboelectric materials often result in the deformation or breakage of TENG under high mechanical loads, thereby limiting their potential applications. Herein, a new strategy for fabricating self-healing triboelectric materials is reported, which introduces cross-linking networks with hydrogen bonds and metal coordination bonds. The desired high performance can be achieved by simply adjusting the molar ratio of the metal to the ligand. When the molar ratio is 1:2, the tensile strength, toughness, and elongation at break of the material reached 13.7 MPa, 76.9 MJ m, and 1321%, respectively. Furthermore, its self-healing efficiency can reach 74% at 70 °C in 6 h. Working in contact-separation mode, the electrical output can reach 164 V, 18.2 µA, 57.5 nC, with a maximum power density of 2.54 W m. Notably, even if it is sheared, the electrical output performances of TENG can be completely recovered to the original state. In addition, the developed TENG exhibits excellent output stability over 10 000 contact separation cycles. This study presents a promising approach for the development of stretchable smart generators.

摘要

自修复材料的发展为推进摩擦电纳米发电机(TENGs)带来了新的机遇和挑战。然而,自修复摩擦电材料的低强度和低韧性常常导致TENG在高机械负载下变形或破损,从而限制了它们的潜在应用。在此,报道了一种制备自修复摩擦电材料的新策略,该策略引入了具有氢键和金属配位键的交联网络。通过简单地调整金属与配体的摩尔比就能实现所需的高性能。当摩尔比为1:2时,材料的拉伸强度、韧性和断裂伸长率分别达到13.7兆帕、76.9兆焦/立方米和1321%。此外,其在70℃下6小时的自修复效率可达74%。在接触-分离模式下工作时,电输出可达164伏、18.2微安、57.5纳库,最大功率密度为2.54瓦/平方米。值得注意的是,即使被剪切,TENG的电输出性能也能完全恢复到原始状态。此外,所开发的TENG在10000次接触分离循环中表现出优异的输出稳定性。这项研究为可拉伸智能发电机的发展提出了一种有前景的方法。

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