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Metal Matrix Composite Solar Cell Metallization

机译:金属矩阵复合太阳能电池金属化

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摘要

Advanced solar cells are moving to ever thinner formats in order to save mass and in some cases improve performance. As cells are thinned, the possibility that they may fracture or cleave due to mechanical stresses is increased. Fractures of the cell can degrade the overall device performance if the fracture propagates through the contact metallization, which frequently occurs. To address this problem, a novel semiconductor metallization system based on multi-walled carbon nanotube (CNT) reinforcement, termed metal matrix composite (MMC) metallization is under investigation. Electro-mechanical characterization of MMC films demonstrate their ability to provide electrical conductivity over >40 micron wide cracks in the underlying semiconductor, with the carbon nanotubes bridging the gap. In addition, these materials show a “self-healing” behaviour, electrically reconnecting at ~30 microns when strained past failure. Triple junction (TJ) space cells with MMC metallization demonstrated no loss in Jsc after intentional fracture, whereas TJ cells with conventional metallization suffer up to 50% Jsc loss.
机译:高级太阳能电池移动到更薄的格式,以节省质量,在某些情况下提高性能。随着细胞的变薄,它们可能由于机械应力而裂缝或切割的可能性增加。如果裂缝通过经常发生的接触金属化,细胞的骨折可以降低整个装置性能。为了解决这个问题,正在研究基于多壁碳纳米管(CNT)增强的新型半导体金属化系统,称为金属基质复合物(MMC)金属化。 MMC薄膜的电力表征证明了它们在底层半导体中提供电导率上的电导率> 40微米宽裂缝,碳纳米管桥接间隙。此外,这些材料表明了“自我愈合”行为,在紧张的过去失败时在〜30微米处电断。 Triple Junction(TJ)具有MMC金属化的空间细胞在有意的骨折后没有在JSC中缺失,而具有常规金属化的TJ细胞遭受高达50%的JSC损失。

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