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集成压电超声阵列和基于MXene的固态超级电容器的柔性可穿戴无线充电电源系统

Flexible, Wearable Wireless-Charging Power System Incorporating Piezo-Ultrasonic Arrays and MXene-Based Solid-State Supercapacitors.

作者信息

Zhou Qin, Zhu Chong, Xue Haoyue, Jiang Laiming, Wu Jiagang

机构信息

College of Materials Science and Engineering, Sichuan University, Chengdu 610064, China.

出版信息

ACS Appl Mater Interfaces. 2024 Jul 10;16(27):35268-35278. doi: 10.1021/acsami.4c03143. Epub 2024 Jun 25.

Abstract

With the continuous development of wearable electronics, higher requirements are put forward for flexible, detachable, stable output, and long service life power modules. Given the limited capacity of energy storage devices, the integration of energy capture and storage is a viable approach. Here, we present a flexible, wearable, wireless-charging power system that integrates a piezoelectric ultrasonic array harvester (PUAH) with MXene-based solid-state supercapacitors (MSSSs) in a soft wristband format for sustainable applications. The MSSS as the energy storage module is developed by using TiCT nanosheet-loaded inserted finger-like carbon cloth skeletons as electrodes and poly(vinyl alcohol)/HPO gel as electrolytes, with high energy density (58.74 Wh kg) and long cycle life (99.37%, 10,000 cycles). A two-dimensional stretchable piezoelectric array as a wireless-charging module hybridizes high-performance 1-3 composite units with serpentine electrodes, which allows wireless power via ultrasonic waves, with a maximum power density of 1.56 W cm and an output voltage of 20.75 V. The overall PUAH-MSSS wireless energy supply system is 2 mm thick and offers excellent energy conversion/storage performance, cyclic stability, and mechanical flexibility. The results of this project will lay the foundation for the development of next-generation wearable electronics.

摘要

随着可穿戴电子设备的不断发展,对柔性、可拆卸、稳定输出且使用寿命长的电源模块提出了更高要求。鉴于储能设备的容量有限,能量捕获与存储的集成是一种可行的方法。在此,我们展示了一种柔性、可穿戴的无线充电电源系统,该系统以柔软腕带的形式将压电超声阵列采集器(PUAH)与基于MXene的固态超级电容器(MSSS)集成在一起,用于可持续应用。作为储能模块的MSSS是通过使用负载TiCT纳米片的插入式指状碳布骨架作为电极,并以聚乙烯醇/HPO凝胶作为电解质开发而成,具有高能量密度(58.74 Wh/kg)和长循环寿命(10000次循环后为99.37%)。作为无线充电模块的二维可拉伸压电阵列将高性能的1-3复合单元与蛇形电极进行了杂交,可实现通过超声波进行无线供电,最大功率密度为1.56 W/cm²,输出电压为20.75 V。整个PUAH-MSSS无线能量供应系统厚度为2 mm,具有出色的能量转换/存储性能、循环稳定性和机械柔韧性。该项目的成果将为下一代可穿戴电子设备的发展奠定基础。

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