光伏系统
热电效应
材料科学
光电-热混合太阳能集热器
能量转换效率
发电
热电发电机
电
光伏
太阳能
热电材料
光电子学
热能
太阳能电缆
热导率
热的
工程物理
太阳镜
功率(物理)
电气工程
复合材料
工程类
气象学
物理
热力学
作者
Daniel Kraemer,Bed Poudel,Hsien-Ping Feng,J. C. Caylor,Bo Yu,Xiao Yan,Yi Ma,Xiaowei Wang,Dezhi Wang,Andrew Muto,Kenneth McEnaney,Matteo Chiesa,Zhifeng Ren,Gang Chen
出处
期刊:Nature Materials
[Springer Nature]
日期:2011-05-01
卷期号:10 (7): 532-538
被引量:1153
摘要
The conversion of sunlight into electricity has been dominated by photovoltaic and solar thermal power generation. Photovoltaic cells are deployed widely, mostly as flat panels, whereas solar thermal electricity generation relying on optical concentrators and mechanical heat engines is only seen in large-scale power plants. Here we demonstrate a promising flat-panel solar thermal to electric power conversion technology based on the Seebeck effect and high thermal concentration, thus enabling wider applications. The developed solar thermoelectric generators (STEGs) achieved a peak efficiency of 4.6% under AM1.5G (1 kW m(-2)) conditions. The efficiency is 7-8 times higher than the previously reported best value for a flat-panel STEG, and is enabled by the use of high-performance nanostructured thermoelectric materials and spectrally-selective solar absorbers in an innovative design that exploits high thermal concentration in an evacuated environment. Our work opens up a promising new approach which has the potential to achieve cost-effective conversion of solar energy into electricity.
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