热电发电机
光热治疗
材料科学
热电效应
光电子学
能量转换效率
发电机(电路理论)
功率密度
能量收集
功率(物理)
纳米技术
光伏系统
吸收(声学)
光热效应
太阳能
薄膜
图层(电子)
发电
光伏
能量转换
可穿戴计算机
热电材料
高效能源利用
计算机科学
电子工程
薄层
塞贝克系数
作者
Shuaihang Hou,Jian Wang,Guixia Zhang,Xinqi Liu,Zuoxu Wu,Bingshang Liu,Mengyang Lu,Muhao Zhang,Shihao Qiu,Zhiliang Li,Feng Cao,Qian Zhang,Shufang Wang
标识
DOI:10.1038/s41467-026-69120-w
摘要
Flexible solar-thermoelectric generators hold great promise for efficient solar energy harvesting and power supply in wearable electronics. However, the achievement of strong photothermal and thermoelectric performance simultaneously within a single material remains a significant challenge. Here, we propose a fully integrated solar-thermoelectric generator that directly employs Ag2Se thermoelectric thin films as the light-absorbing terminal, combined with a bottom infrared-reflective layer and surface visible anti-reflective coating. This multilayer architecture enables solar-selective absorption and enhances the photothermal conversion efficiency of Ag2Se up to 87.6%, while demonstrating good generalizability to other narrow-bandgap thermoelectric films. The resulting ring-shaped flexible generator delivers a maximum temperature difference and power density of 19.6 K and 0.17 μW cm-2 under 1-sun irradiation and exhibits a stable peak output power of ~1 μW under prolonged outdoor sunlight. These results highlight an effective strategy for high-efficiency solar-thermoelectric generators design and broaden the application potential of narrow-bandgap thermoelectric thin films in photothermal energy conversion. A fully integrated flexible solar-thermoelectric generator is demonstrated utilizing Ag2Se thin films as both efficient photothermal absorber and thermoelectric generators. The device delivers a power density of 0.17 μW cm-2 under 1-sun illumination, attributed to enhanced photothermal conversion efficiency.
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