可再生能源
热电发电机
能量收集
材料科学
发电
工艺工程
热能
太阳能
电
光电子学
发电机(电路理论)
功率(物理)
环境科学
工程物理
计算机科学
电气工程
热电效应
工程类
物理
量子力学
热力学
作者
Shuai Zhang,Zhenhua Wu,Zekun Liu,Erzhen Mu,Yang Liu,Yongbo Lv,Thomas Thundat,Zhiyu Hu
标识
DOI:10.1002/admt.202200478
摘要
Abstract Environmental energy source is abundant, inexhaustible, ubiquitous, and free. However, harvesting thermal energy from the environment to generate uninterrupted electricity is still challenging. Herein, a power device to simultaneously harvest energy from the sun and cold space based on a microfabricated thermoelectric generator (TEG) integrated with a solar absorber (SA) and radiative cooling emitter (RCE) is reported. Nano‐channel arrays structure is introduced in SA to achieve high broadband light absorption ( ≈ 96%) over the entire solar spectrum. Then, a typical RCE is fabricated to demonstrate the great potential of cooperating with SA to create a continuous temperature difference for thermal energy harvesting. Furthermore, a TEG sandwiched between SA and RCE can convert the thermal energy into electricity, which is proved by a chip‐integrated micro‐TEG experimentally. What is more, two self‐generation power devices are designed, and the power generation of the reverse structure demo device (r‐TEG) is 130% of the forward one (f‐TEG) in the daytime and 260% in the nighttime. The results demonstrate a renewable and sustainable thermodynamic green resource on chips for power generation independent of time and geographical restrictions, which is vital for promoting the sun and cold space as viable energy sources beyond traditional technologies.
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