Flexible thermoelectric device with blade-like structure for ultrahigh output performance
Chuanyao Sun, Xuefeng Zhao, Pengfei Qiu, Xinjie Yuan, Shiqi Yang, Yi Wu, Yang Fangjia Yang, Lidong Chen 等 9 位
Shanghai Institute of Ceramics University of Chinese Academy of Sciences Tongji University Shanghai Pulmonary Hospital
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摘要与影响
Thermoelectric (TE) technology can convert waste heat from human body into clean electrical power, which can be used for passive and real-time human health monitoring. However, conventional TE devices with pillar-like legs yield low voltage and power under wearable conditions to meet the operational thresholds of most electronics, impeding the development of self-powered human health monitoring system. In this study, we present a novel flexible blade-like structure for TE device, which can achieve record-breaking power density (135.3 μW cm −2 ) and voltage density (38.8 mV cm −2 ) when worn on the human body, delivering adequate electricity (voltage ~3.3 V and power output ~11.5 mW) to power the electronics. The blade-like device has thin and long TE legs with the thickness in micron scale and the width/height in millimeter scale, which can yield a large temperature gradient for achieving high output performance. On this basis, a flexible and self-powered human heath monitoring system is developed, which can real-time detect human heart rate and blood oxygen saturation without the need for additional batteries. This development can accelerate the applications of TE technology in wearable health monitoring.
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材料 / 化学Advanced Thermoelectric Materials and Devices
Innovative Energy Harvesting Technologies · Advanced Thermodynamics and Statistical Mechanics
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