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A study of the degradation mechanisms of ultra-thin CIGS solar cells submitted to a damp heat environment

机译:湿热环境下超薄CIGS太阳能电池的降解机理研究

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Producing the green energy of tomorrow will require highly efficient as well as energy-, and cost-effective solar cells in addition to having reasonable lifetimes. To determine if CIGS can be made to submit to these constraints, we produced ultra-thin (500nm) single-stage coevaporated CIGS solar cells. We doped these cells with varying amounts and types of alkali atoms and submitted them to accelerated lifetime testing. Results showed definite effect of the alkali concentration on the degradation of the cells but showed limited migration. Instead, the seeping of water into the grain boundaries was identified as the main culprit for performance degradation.
机译:产生明天的绿色能源,除了具有合理的使用寿命外,还需要高效,节能,经济的太阳能电池。为了确定是否可以使CIGS服从这些限制,我们生产了超薄(500nm)单级共蒸发CIGS太阳能电池。我们用不同数量和类型的碱原子掺杂了这些电池,并将其用于加速寿命测试。结果显示了碱浓度对细胞降解的确定影响,但显示出有限的迁移。相反,水渗入晶界被认为是性能下降的主要原因。

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