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Long term stability of air processed inkjet infiltrated carbon-based printed perovskite solar cells under intense ultra-violet light soaking

机译:在强烈的紫外线光浸泡下,空气处理的喷墨渗透碳基印刷钙钛矿太阳能电池的长期稳定性

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摘要

The long term stability of air processed inkjet infiltrated carbon based perovskite solar cells (CPSCs) is investigated under intense ultra-violet light soaking equivalent to 1.5 Sun UV light illumination. Two batches of the fabricated CPSCs were exposed systematically i.e. first without implementing any protective coating and then epoxying the CPSCs through a low cost commonly available epoxy which was applied to serve as a barrier against moisture and humidity intrusions. The CPSCs with no protective layer against moisture and humidity first exhibited impressive preliminary stability for hundreds of hours during their exposition by intense UV light and provided great motivation to test the CPSCs further with more optimization. As a result, the CPSCs having commonly available epoxy as a protective barrier exhibited remarkable durability and showed no performance degradation for a period of 1002 hours under intense and continuous 1.5 Sun equivalent UV light illumination proving that the technology is clearly not inherently instable and that future developments might lead to market breakthrough.
机译:研究了经过空气处理的喷墨渗透碳基钙钛矿太阳能电池(CPSC)的长期稳定性,该浸泡在相当于1.5 Sun UV光照的强烈紫外线下进行。对两批制成的CPSC进行了系统曝光,即首先不进行任何保护性涂层,然后通过低成本的常用环氧树脂对CPSC进行环氧,该环氧树脂被用作防潮和防潮的屏障。没有防潮和防潮保护层的CPSC在暴露于强烈紫外线下,在其暴露的数百小时中表现出令人印象深刻的初步稳定性,并为进一步优化CPSC进行测试提供了极大的动力。结果,具有通常可用的环氧树脂作为保护层的CPSC表现出了卓越的耐久性,并且在1.5倍的连续等量的紫外线等效紫外线照射下,在1002小时内没有性能下降,这证明该技术显然不是固有地不稳定的,并且未来还会持续事态发展可能会导致市场突破。

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