摩擦电效应
超材料
纳米技术
能量收集
材料科学
可穿戴技术
机械能
纳米机电系统
数码产品
折叠(DSP实现)
纳米制造
可扩展性
可伸缩电子设备
可穿戴计算机
机制(生物学)
计算机科学
顺应机制
机械工程
微电子机械系统
转化式学习
桥(图论)
能量(信号处理)
能量转换
仿生学
柔性电子器件
灵活性(工程)
3D打印
机械系统
系统工程
软质材料
作者
Han-Lin Sun,Xiaocheng Sun,Zhihao Zhao,Jie Wang
摘要
ABSTRACT Origami‐ and Kirigami‐inspired structures have emerged as transformative strategies for enhancing the performance and versatility of triboelectric nanogenerators (TENGs). Their folding mechanisms facilitate efficient for contact‐separation TENGs, as well as their geometric patterns provide essential stretchability for complex interfaces. This review emphasizes that the core mechanism of these architectures lies in their ability to bridge mechanical deformation and electrical output of TENGs. On this basis, we summarize the representative origami and kirigami configurations and their mechanical characteristics. More importantly, we propose a general design framework to clarify how these structural strategies adapt to different operating conditions by leveraging their inherent mechanical characteristics. Typical applications include blue energy harvesting, vibration and biomechanical energy harvesting for micro/nano energy systems, self‐powered sensing for environmental and health monitoring, tactile sensing, and wearable electronics that benefit from the stretchability and deformability of kirigami structures. Finally, the current challenges and outline emerging opportunities toward deeper functional integration and scalable implementation of origami‐ and kirigami‐inspired TENGs are concluded.
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