摩擦电效应
材料科学
电容感应
电容
能量收集
电池(电)
生物医学工程
光电子学
电介质
电阻抗
超声波
电气工程
功率(物理)
声学
电极
复合材料
化学
物理
物理化学
量子力学
工程类
医学
作者
Young‐Jun Kim,Jiho Lee,Joon‐Ha Hwang,Youngwook Chung,Byung‐Joon Park,Junho Kim,So‐Hee Kim,Junseung Mun,Hong‐Joon Yoon,Sung‐Min Park,Sang‐Woo Kim
标识
DOI:10.1002/adma.202307194
摘要
Abstract In implantable bioelectronics, which aim for semipermanent use of devices, biosafe energy sources and packaging materials to protect devices are essential elements. However, research so far has been conducted in a direction where they cannot coexist. Here, the development of capacitance‐matched triboelectric implants driven is reported by ultrasound under 500 mW cm −2 safe intensity and realize a battery‐free, miniatured, and wireless neurostimulator with full titanium (Ti) packaging. The triboelectric implant with high dielectric composite, which has ultralow output impedance, can efficiently deliver sufficient power to generate the stimulation pulse without an energy‐storing battery, despite ultrasound attenuation due to the Ti, and has the highest energy transmission efficiency among those reported so far. In vivo study using a rat model demonstrated that the proposed device system is an effective solution for relieving urinary symptoms. These achievements provide a significant step toward permanently implantable devices for controlling human organs and treating various diseases.
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