首页> 外文期刊>Solar Energy Materials and Solar Cells: An International Journal Devoted to Photovoltaic, Photothermal, and Photochemical Solar Energy Conversion >Enhancing passive radiative cooling properties of flexible CIGS solar cells for space applications using single layer silicon oxycarbonitride films
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Enhancing passive radiative cooling properties of flexible CIGS solar cells for space applications using single layer silicon oxycarbonitride films

机译:使用单层硅氧氮膜加强柔性CIGS太阳能电池的无源辐射冷却性能

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摘要

Satellites in lower earth orbits have been primarily powered by photovoltaic modules. With growing power demand for new satellite concepts, solar cells are required to be flexible and ultra-lightweight to decrease launch costs. CIGS thin film solar technology is a promising candidate, since it can be manufactured on flexible substrates and possesses high radiation hardness. Poor radiative properties of CIGS on the other hand, lead to high temperatures and therefore power loss. High emissivity coatings on CIGS have already been reported but the influence on thermal and electrical aspects have not been addressed. Here we present the optical properties of silicon-oxycarbonitride coatings and their effect on electrical parameters on CIGS cells to be used for the DLR's GoSolAr power sail mission. We show that the single layer coating can significantly increase emissivity from 0.3 to 0.72, with minimal spectral losses and negligible impact on the functioning of the underlying CIGS cell. We simulated the thermal impact of the coating on solar cells in orbit and can predict that the maximum temperature of the cells is reduced by 30 degrees C, resulting in a significant power gain. Additionally, the coating has an emissivity of 0.87 in the atmospheric window of 8-13 mu m making it a very good passive radiative cooler for terrestrial solar cells. The low-cost coating can replace glass and the process can be scaled up for large CIGS modules. The coating can also significantly increase the power to mass ratio of solar modules, reducing costs for space applications.
机译:较低地球轨道的卫星主要由光伏模块供电。随着对新卫星概念的需求不断增长,太阳能电池是灵活的和超轻量级,以降低发射成本。 CIGS薄膜太阳能技术是一个有希望的候选者,因为它可以在柔性基板上制造并且具有高辐射硬度。另一方面,CIGS的辐射性能差,导致高温,因此电力损失。已经报道了CIGS上的高发射率涂层,但尚未解决对热和电气方面的影响。在这里,我们介绍了硅 - 氧氮化物涂料的光学性质及其对用于DLR的Gosolar Power Sail Mission的CIGS细胞上的电气参数的影响。我们表明,单层涂层可以显着增加0.3〜0.72的发射率,并且对底层CIGS细胞的功能的频谱损失和忽略不计。我们模拟涂层在轨道上的太阳能电池的热冲击,并且可以预测电池的最高温度减少30℃,导致显着的功率增益。另外,涂层在8-13μm的大气窗口中具有0.87的发射率,使其成为陆地太阳能电池的非常好的被动辐射冷却器。低成本涂层可以更换玻璃,可以缩小该过程的大型CIGS模块。涂层还可以显着增加太阳能模块的质量比的功率,降低了空间应用的成本。

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