摩擦电效应
材料科学
水下
纳米发生器
电压
信号(编程语言)
功率(物理)
发光
光电子学
计算机科学
光功率
电极
纳米技术
光通信
发射机
光子学
自愈
通信系统
无线电频率
高压
作者
Chen Xie,Xin Jing,Yaoxun Zhang,Peiyong Feng,Liya Lin,Yuejun Liu
摘要
ABSTRACT Operating flexible sensors in diverse environments, especially underwater with limited power and communication, remains a significant challenge. Herein, we present a photopatterned tribo‐mechanoluminescent (TML) hydrogel that integrates stress‐induced luminescence and triboelectricity into a single, multifunctional platform. The device is fabricated in one step using a customized photomask, which simultaneously structures the hydrogel electrode and embeds colorful, predefined luminescent patterns. Upon mechanical stimulation, the device generates a synchronous electrical output as a triboelectric nanogenerator (TENG) with an open‐circuit voltage of 82 V, while also providing an instantaneous visual optical response, enabling dual‐mode sensing without an external power supply. We quantitatively investigated the correlation between light emission intensity and applied force, as well as UV exposure conditions. Leveraging these dual outputs, the TML hydrogel achieves excellent performance in multimodal motion monitoring and, more importantly, serves as a self‐powered underwater distress beacon. The visual SOS pattern offers a clear optical signal for rescue identification, while the synchronous electrical pulses can be transmitted to remote receivers via connecting cables. This work provides a new strategy for designing intelligent, self‐powered systems for emergency rescue and human–machine interaction in austere environments.
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