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Sustainably powering wearable electronics solely by biomechanical energy

机译:仅通过生物力学能量为可穿戴电子设备持续供电

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摘要

Harvesting biomechanical energy is an important route for providing electricity to sustainably drive wearable electronics, which currently still use batteries and therefore need to be charged or replaced/disposed frequently. Here we report an approach that can continuously power wearable electronics only by human motion, realized through a triboelectric nanogenerator (TENG) with optimized materials and structural design. Fabricated by elastomeric materials and a helix inner electrode sticking on a tube with the dielectric layer and outer electrode, the TENG has desirable features including flexibility, stretchability, isotropy, weavability, water-resistance and a high surface charge density of 250 μC m−2. With only the energy extracted from walking or jogging by the TENG that is built in outsoles, wearable electronics such as an electronic watch and fitness tracker can be immediately and continuously powered.
机译:收集生物力学能量是提供电能以可持续驱动可穿戴电子设备的重要途径,可穿戴电子设备目前仍在使用电池,因此需要经常充电或更换/处置。在这里,我们报告了一种通过摩擦电纳米发电机(TENG)采用优化的材料和结构设计,仅靠人体运动就可以连续为可穿戴电子设备供电的方法。 TENG由弹性材料制成,螺旋形内电极贴在带有电介质层和外电极的管上,具有理想的功能,包括柔韧性,可拉伸性,各向同性,可编织性,耐水性和250μCm −2 。仅通过外底内置的TENG步行或慢跑中提取的能量,可立即连续供电的可穿戴电子设备,例如电子表和健身追踪器。

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