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首页> 外文期刊>Advanced Functional Materials >Stretchable and Shape-Adaptable Triboelectric Nanogenerator Based on Biocompatible Liquid Electrolyte for Biomechanical Energy Harvesting and Wearable Human-Machine Interaction
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Stretchable and Shape-Adaptable Triboelectric Nanogenerator Based on Biocompatible Liquid Electrolyte for Biomechanical Energy Harvesting and Wearable Human-Machine Interaction

机译:基于生物相容性液体电解质的伸展和形状适应的摩擦纳米料,用于生物力学能量收获和可携带人的机器相互作用

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摘要

The significant demand of sustainable power sources has been triggered by the development of wearable electronics (e.g., electronic skin, human health monitors, and intelligent robotics). However, tensile strain limitation and low conformability of existing power sources cannot match their development. Herein, a stretchable and shape-adaptable liquid-based single-electrode triboelectric nanogenerator (LS-TENG) based on potassium iodide and glycerol (KI-Gly) liquid electrolyte as work electrode is developed for harvesting human motion energy to power wearable electronics. The LS-TENG demonstrates high output performances (open-circuit voltage of 300 V, short-circuit current density of 17.5 mA m(-2), and maximum output power of 2.0 W m(-2)) and maintains the stable output performances without deterioration under 250% tension stretching and after 10 000 cycles of repeated contact-separation motion. Moreover, the LS-TENG can harvest biomechanical energy, including arm shaking, human walking, and hand tapping, to power commercial electronics without extra power sources. The LS-TENG attached on different joints of body enables to work as self-powered human motion monitor. Furthermore, a flexible touch panel based on the LS-TENG combined with a microcontroller is explored for human-machine interactions. Consequently, the stretchable and shape-adaptable LS-TENG based on KI-Gly electrolyte would act as an exciting platform for biomechanical energy harvesting and wearable human-machine interaction.
机译:可持续电源的重大需求被可穿戴电子产品的发展引发(例如,电子皮肤,人类健康监视器和智能机器人)。然而,现有电源的拉伸应变限制和低规格性不能符合其发展。这里,基于碘化钾和甘油(Ki-Gly)液体电解质作为工作电极的可拉伸和形状适应的液体基单电纳米料纳米料(LS-Teng),用于收获人的运动能量以动力可穿戴电子器件。 LS-Teng表示高输出性能(开路电压为300 V,短路电流密度为17.5 mA m(-2),最大输出功率为2.0 W m(-2)),并保持稳定的输出性能在250%张力下的张力下和10 000周期的重复接触分离运动之后而没有劣化。此外,LS-teng可以收获生物力学能量,包括手臂摇动,人行道和手动攻丝,在没有额外的电源的情况下电力商业电子。 LS-Teng附着在身体的不同关节上,可以作为自动人力人体运动监视器。此外,探索了一种基于LS-Teng与微控制器结合的柔性触控面板进行人机交互。因此,基于Ki-Gly电解质的可拉伸和形状适应的LS-Teng将作为生物力学能量收集和可穿戴人机相互作用的令人兴奋的平台。

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