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基于电容式摩擦电技术的经皮超声能量采集。

Transcutaneous ultrasound energy harvesting using capacitive triboelectric technology.

机构信息

School of Advanced Materials Science and Engineering, Sungkyunkwan University, Suwon 440-746, Republic of Korea.

Cardiovascular Center, Seoul National University Hospital, Seoul, Republic of Korea.

出版信息

Science. 2019 Aug 2;365(6452):491-494. doi: 10.1126/science.aan3997.

Abstract

A major challenge for implantable medical systems is the inclusion or reliable delivery of electrical power. We use ultrasound to deliver mechanical energy through skin and liquids and demonstrate a thin implantable vibrating triboelectric generator able to effectively harvest it. The ultrasound can induce micrometer-scale displacement of a polymer thin membrane to generate electrical energy through contact electrification. We recharge a lithium-ion battery at a rate of 166 microcoulombs per second in water. The voltage and current generated ex vivo by ultrasound energy transfer reached 2.4 volts and 156 microamps under porcine tissue. These findings show that a capacitive triboelectric electret is the first technology able to compete with piezoelectricity to harvest ultrasound in vivo and to power medical implants.

摘要

植入式医疗系统面临的一个主要挑战是如何包含或可靠地传输电力。我们使用超声波将机械能透过皮肤和液体传输,并展示了一种能够有效收集机械能的薄型植入式振动摩擦电发电机。超声波可以引起聚合物薄膜的微米级位移,通过接触带电来产生电能。我们在水中以每秒 166 微库仑的速度对锂离子电池进行充电。在猪组织中,超声能量传递产生的电压和电流达到 2.4 伏特和 156 微安。这些发现表明,电容式摩擦电静电发电机是第一种能够与压电技术竞争、在体内收集超声波并为医疗植入物供电的技术。

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