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Hybrid Smart Fiber with Spontaneous Self-Charging Mechanism for Sustainable Wearable Electronics

机译:具有自发性自我充电机制的可持续智能电子混合智能光纤

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摘要

Smart wearable electronics that are fabricated on light-weight fabrics or flexible substrates are considered to be of next-generation and portable electronic device systems. Ideal wearable and portable applications not only require the device to be integrated into various fiber form factors, but also desire self-powered system in such a way that the devices can be continuously supplied with power as well as simultaneously save the acquired energy for their portability and sustainability. Nevertheless, most of all self-powered wearable electronics requiring both the generation of the electricity and storing of the harvested energy, which have been developed so far, have employed externally connected individual energy generation and storage fiber devices using external circuits. In this work, for the first time, a hybrid smart fiber that exhibits a spontaneous energy generation and storage process within a single fiber device that does not need any external electric circuit/connection is introduced. This is achieved through the employment of asymmetry coaxial structure in an electrolyte system of the supercapacitor that creates potential difference upon the creation of the triboelectric charges. This development in the self-charging technology provides great opportunities to establish a new device platform in fiber/textile-based electronics.
机译:在轻型织物或柔性基板上制造的智能可穿戴电子设备被认为是下一代便携式电子设备系统。理想的可穿戴和便携式应用不仅需要将设备集成到各种光纤形状因数中,而且还需要自供电系统,以便可以为设备连续供电并同时为它们的便携性节省获取的能量和可持续性。然而,迄今为止已经开发的所有需要​​电力产生和所收集的能量存储的所有自供电可穿戴电子设备,已经使用了使用外部电路的外部连接的单个能量产生和存储光纤设备。在这项工作中,首次引入了一种混合智能光纤,该光纤在不需要任何外部电路/连接的单光纤设备中即可自发产生能量并进行存储。这通过在超级电容器的电解质系统中采用不对称同轴结构来实现,该不对称同轴结构在产生摩擦电荷时产生电势差。自充电技术的发展为在基于光纤/纺织的电子产品中建立新的设备平台提供了巨大的机会。

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