Zhong Han, Zhou Yangying, Wang Cong, Wan Chunlei, Koumoto Kunihito, Wang Zhiping, Lin Hong
State Key Laboratory of New Ceramics & Fine Processing, School of Materials Science and Engineering, Tsinghua University, Beijing, China.
Huaneng Clean Energy Research Institute, Beijing, China.
Sci Technol Adv Mater. 2024 Apr 3;25(1):2336399. doi: 10.1080/14686996.2024.2336399. eCollection 2024.
Photovoltaic-thermoelectric (PV-TE) tandem system has been considered as an effective way to fully utilize the solar spectrum, and has been demonstrated in a perovskite solar cell (PSC)-thermoelectric (TE) configuration. However, the conventional PSC-TE tandem architecture cannot convert infrared light transmitted through the upper PSC into heat effectively, impeding the heat-electricity conversion of TE devices. Herein, a semi-transparent PSC-photothermal-TE tandem system is designed for improved photothermal utilization. Through optimizing the buffer layer of the back transparent electrode, semi-transparent PSC with a power conversion efficiency (PCE) of 13% and an average transmittance of 53% in the range of 800-1500 nm was obtained. On this basis, a photothermal thin film was introduced between the semi-transparent PSC and the TE device, which increased the efficiency contribution ratio of the TE device from 14% to 19%, showing enhanced utilization of AM 1.5 G solar spectrum and improved photo-thermal-electric conversion efficiency.
光伏 - 热电(PV - TE)串联系统被认为是充分利用太阳光谱的有效途径,并且已在钙钛矿太阳能电池(PSC) - 热电(TE)配置中得到验证。然而,传统的PSC - TE串联结构无法有效地将透过上层PSC的红外光转化为热量,这阻碍了TE器件的热电转换。在此,设计了一种半透明PSC - 光热 - TE串联系统以提高光热利用率。通过优化背面透明电极的缓冲层,获得了功率转换效率(PCE)为13%且在800 - 1500 nm范围内平均透过率为53%的半透明PSC。在此基础上,在半透明PSC和TE器件之间引入了光热薄膜,这使得TE器件的效率贡献率从14%提高到了19%,表明增强了对AM 1.5 G太阳光谱的利用并提高了光 - 热 - 电转换效率。