材料科学
钙钛矿(结构)
掺杂剂
欧姆接触
兴奋剂
氧化物
化学工程
双层
光电子学
聚合物
图层(电子)
纳米技术
化学
复合材料
膜
工程类
冶金
生物化学
作者
Yicheng Zhao,Thomas Heumueller,Jiyun Zhang,Junsheng Luo,Olga Kasian,Stefan Langner,Christian Kupfer,Bowen Liu,Yu Lin Zhong,Jack Elia,Andres Osvet,Jianchang Wu,Chao Liu,Zhongquan Wan,Chunyang Jia,Ning Li,Jens Hauch,Christoph J. Brabec
出处
期刊:Nature Energy
[Springer Nature]
日期:2021-12-16
卷期号:7 (2): 144-152
被引量:161
标识
DOI:10.1038/s41560-021-00953-z
摘要
The long-term stability of perovskite solar cells remains a challenge. Both the perovskite layer and the device architecture need to endure long-term operation. Here we first use a self-constructed high-throughput screening platform to find perovskite compositions stable under heat and light. Then, we use the most stable perovskite composition to investigate the stability of contact layers in solar cells. We report on the thermal degradation mechanism of transition metal oxide contact (for example, Ta-WOx/NiOx) and propose a bilayer structure consisting of acid-doped polymer stacked on dopant-free polymer as an alternative. The dopant-free polymer provides an acid barrier between the perovskite and the acid-doped polymer. The bilayer structure exhibits stable ohmic contact at elevated temperatures and buffers iodine vapours. The unencapsulated device based on the bilayer contact (with a MgF2 capping layer) retains 99% of its peak efficiency after 1,450 h of continuous operation at 65 °C in a N2 atmosphere under metal-halide lamps. The device also shows negligible hysteresis during the entire ageing period.
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