Curved Architected Triboelectric Metamaterials: Auxeticity‐Enabled Enhanced Figure‐of‐Merit

摩擦电效应 超材料 材料科学 功勋 能量收集 机械能 纳米技术 光电子学 能量(信号处理) 复合材料 物理 功率(物理) 量子力学
作者
Haoyu Chen,Jiahao Shi,Abdolhamid Akbarzadeh
出处
期刊:Advanced Functional Materials [Wiley]
卷期号:33 (49) 被引量:12
标识
DOI:10.1002/adfm.202306022
摘要

Abstract Triboelectric generators are integrated into curved architected materials to realize triboelectric metamaterials that simultaneously harvest electricity from wasted mechanical energy and perform mechanical energy absorption. Novel triboelectric mechanical metamaterials (TMMs) of distance‐changing, angle‐changing, and mixed modes are designed, fabricated, and tested under a cyclic compressive load. The open‐circuit voltage and short‐circuit current of lightweight TMMs are found to be as high as 40 V and 10 nA. The introduced TMMs can effectively harvest energy under loadings from two distinctive directions. A theoretical model for predicting the energy harvesting properties of TMMs is developed, and the role of auxeticity on the energy harvesting figure‐of‐merit (FOM es ) is elicited. The introduced TMMs exhibit enhanced FOM es enabled by a decrease in their negative Poisson's ratio and an increase in their resilience. The FOM es of curved architected TMMs surpasses by more than 16 times the FOM es of triboelectric materials with conventional architectures (i.e., triangular, quadrilateral, and hexagonal cell topologies). An intelligent skateboard with integrated TMMs is fabricated as a proof of concept to demonstrate motion sensing, shock‐absorbing, and energy harvesting functionalities of multimodal triboelectric metamaterials. The introduced design strategy for triboelectric metamaterials unlocks their applications in self‐powered and self‐monitoring sports equipment, smart soft robots, and large‐scale energy harvesters.

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