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Self-rechargeable cardiac pacemaker system with triboelectric nanogenerators

作者:Hanjun Ryu, Hyun-Moon Park, Moo-Kang Kim, Bosung Kim, Hyoun Seok Myoung, Tae Yun Kim, Hong‐Joon Yoon, Sung Soo Kwak, Jihye Kim, Tae Ho Hwang, Eue‐Keun Choi, Sang‐Woo Kim · 发表于:Nature Communications · 年份:2021 · DOI:10.1038/s41467-021-24417-w · 被引用次数:330 · 研究领域:Advanced Sensor and Energy Harvesting Materials、Innovative Energy Harvesting Technologies、Tactile and Sensory Interactions

Abstract Self-powered implantable devices have the potential to extend device operation time inside the body and reduce the necessity for high-risk repeated surgery. Without the technological innovation of in vivo energy harvesters driven by biomechanical energy, energy harvesters are insufficient and inconvenient to power titanium-packaged implantable medical devices. Here, we report on a commercial coin battery-sized high-performance inertia-driven triboelectric nanogenerator (I-TENG) based on body motion and gravity. We demonstrate that the enclosed five-stacked I-TENG converts mechanical energy into electricity at 4.9 μW/cm 3 (root-mean-square output). In a preclinical test, we show that the device successfully harvests energy using real-time output voltage data monitored via Bluetooth and demonstrate the ability to charge a lithium-ion battery. Furthermore, we successfully integrate a cardiac pacemaker with the I-TENG, and confirm the ventricle pacing and sensing operation mode of the self-rechargeable cardiac pacemaker system. This proof-of-concept device may lead to the development of new self-rechargeable implantable medical devices.