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Wearable Triboelectric/Aluminum Nitride Nano‐Energy‐Nano‐System with Self‐Sustainable Photonic Modulation and Continuous Force Sensing

机译:具有自我可持续光子调制和连续力传感的可穿戴摩擦/氮化铝纳米能量纳米系统

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摘要

Wearable photonics offer a promising platform to complement the thriving complex wearable electronics system by providing high‐speed data transmission channels and robust optical sensing paths. Regarding the realization of photonic computation and tunable (de)multiplexing functions based on system‐level integration of abundant photonic modulators, it is challenging to reduce the overwhelming power consumption in traditional current‐based silicon photonic modulators. This issue is addressed by integrating voltage‐based aluminum nitride (AlN) modulator and textile triboelectric nanogenerator (T‐TENG) on a wearable platform to form a nano‐energy‐nano‐system (NENS). The T‐TENG transduces the mechanical stimulations into electrical signals based on the coupling of triboelectrification and electrostatic induction. The self‐generated high‐voltage from the T‐TENG is applied to the AlN modulator and boosts its modulation efficiency regardless of AlN's moderate Pockels effect. Complementarily, the AlN modulator's capacitive nature enables the open‐circuit operation mode of T‐TENG, providing the integrated NENS with continuous force sensing capability which is notably uninfluenced by operation speeds. Furthermore, a physical model is proposed to describe the coupled AlN modulator/T‐TENG system. With the enhanced photonic modulation and the open‐circuit operation mode enabled by synergies between the AlN modulator and the T‐TENG, optical Morse code transmission and continuous human motion monitoring are demonstrated for practical wearable applications.
机译:可穿戴的光子学提供有希望的平台,通过提供高速数据传输通道和强大的光学传感路径来补充蓬勃的复杂可穿戴电子系统。关于光子计算和可调谐(DE)复用功能的实现基于丰富的光子调制器的系统级集成,降低了传统电流基硅光子调制器中的压倒性功耗挑战。通过将基于电压的氮化铝(ALN)调制器和纺织摩擦纳米能器(T-Teng)在可穿戴平台上整合到纳米能量 - 纳米系统(NENS)来解决该问题。基于摩擦电力和静电诱导的耦合,T-Teng将机械刺激转换成电信号。从T-Teng的自我产生的高压应用于ALN调制器,无论ALN的中等穴位效应如何,都会提高其调制效率。互补的是,ALN调制器的电容性质使T-Teng的开放式操作模式能够提供具有连续力传感能力的集成的NENS,其尤其由操作速度毫无终止。此外,提出了一种物理模型来描述耦合的ALN调制器/ T-Tug系统。通过增强的光子调制和通过ALN调制器和T-Teng之间的协同效应使能的开路操作模式,对实际可穿戴应用进行了光学摩尔斯码传输和连续人体运动监控。

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