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Waterproof Fabric‐Based Multifunctional Triboelectric Nanogenerator for Universally Harvesting Energy from Raindrops, Wind, and Human Motions and as Self‐Powered Sensors

机译:防水的基于织物的多功能摩擦电纳米发电机,可从雨滴,风和人体运动中普遍收集能量,并作为自供电传感器

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Developing nimble, shape‐adaptable, conformable, and widely implementable energy harvesters with the capability to scavenge multiple renewable and ambient energy sources is highly demanded for distributed, remote, and wearable energy uses to meet the needs of internet of things. Here, the first single waterproof and fabric‐based multifunctional triboelectric nanogenerator (WPF‐MTENG) is presented, which can produce electricity from both natural tiny impacts (rain and wind) and body movements, and can not only serve as a flexible, adaptive, wearable, and universal energy collector but also act as a self‐powered, active, fabric‐based sensor. The working principle comes from a conjunction of contact triboelectrification and electrostatic induction during contact/separation of internal soft fabrics. The structural/material designs of the WPF‐MTENG are systematically studied to optimize its performance, and its outputs under different conditions of rain, wind, and various body movements are comprehensively investigated. Its applicability is practically demonstrated in various objects and working situations to gather ambient energy. Lastly, a WPF‐MTENG‐based keypad as self‐powered human–system interfaces is demonstrated on a garment for remotely controlling a music‐player system. This multifunctional WPF‐MTENG, which is as flexible as clothes, not only presents a promising step toward democratic collections of alternative energy but also provides a new vision for wearable technologies.
机译:对于分布式,远程和可穿戴式能源使用,满足物联网的需求,迫切需要开发具有敏捷性,形状适应性,适应性和广泛实施性的能量收集器,以具有清除多种可再生能源和环境能源的能力。在这里,展示了第一台基于防水和织物的单功能多功能摩擦纳米发电机(WPF-MTENG),它可以通过自然的微小撞击(雨和风)和人体运动产生电能,不仅可以灵活,自适应,可穿戴,通用的能量收集器,但也可以用作自供电,有源,基于织物的传感器。工作原理来自内部柔软织物的接触/分离过程中接触摩擦带电和静电感应的结合。系统地研究了WPF-MTENG的结构/材料设计以优化其性能,并全面研究了在雨,风和各种身体运动的不同条件下其输出。它的适用性已在各种对象和工作环境中实际证明,以收集环境能量。最后,在用于远程控制音乐播放器系统的服装上,展示了基于WPF-MTENG的键盘作为自供电人机界面。这种多功能的WPF-MTENG像衣服一样灵活,不仅朝着民主收集替代能源迈出了可喜的一步,而且为可穿戴技术提供了新的视野。

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