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实现钙钛矿太阳能电池的长期运行稳定性,在1000小时后稳定效率超过20%。

Achieving Long-Term Operational Stability of Perovskite Solar Cells with a Stabilized Efficiency Exceeding 20% after 1000 h.

作者信息

Yang Tae-Youl, Jeon Nam Joong, Shin Hee-Won, Shin Seong Sik, Kim Young Yun, Seo Jangwon

机构信息

Division of Advanced Materials Korea Research Institute of Chemical Technology (KRICT) 141 Gajeong-Ro, Yuseong-Gu Daejeon 34114 Republic of Korea.

Department of Energy Science Sungkyunkwan University Suwon 16419 Republic of Korea.

出版信息

Adv Sci (Weinh). 2019 May 14;6(14):1900528. doi: 10.1002/advs.201900528. eCollection 2019 Jul 17.

Abstract

Perovskite solar cells (PSCs) with mesoporous TiO (mp-TiO) as the electron transport material attain power conversion efficiencies (PCEs) above 22%; however, their poor long-term stability is a critical issue that must be resolved for commercialization. Herein, it is demonstrated that the long-term operational stability of mp-TiO based PSCs with PCE over 20% is achieved by isolating devices from oxygen and humidity. This achievement attributes to systematic understanding of the critical role of oxygen in the degradation of PSCs. PSCs exhibit fast degradation under controlled oxygen atmosphere and illumination, which is accompanied by iodine migration into the hole transport material (HTM). A diffusion barrier at the HTM/perovskite interface or encapsulation on top of the devices improves the stability against oxygen under light soaking. Notably, a mp-TiO based PSC with a solid encapsulation retains 20% efficiency after 1000 h of 1 sun (AM1.5G including UV) illumination in ambient air.

摘要

以介孔TiO(mp-TiO)作为电子传输材料的钙钛矿太阳能电池(PSC)的功率转换效率(PCE)超过22%;然而,其较差的长期稳定性是商业化必须解决的关键问题。在此,证明了通过将器件与氧气和湿度隔离,可实现PCE超过20%的基于mp-TiO的PSC的长期运行稳定性。这一成果归因于对氧气在PSC降解中的关键作用的系统理解。PSC在受控的氧气气氛和光照下表现出快速降解,同时伴随着碘迁移到空穴传输材料(HTM)中。HTM/钙钛矿界面处的扩散阻挡层或器件顶部的封装可提高光浸泡下对氧气的稳定性。值得注意的是,具有固体封装的基于mp-TiO的PSC在环境空气中1个太阳(AM1.5G包括紫外线)光照1000小时后仍保持20%的效率。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2588/6661943/7afcf820e7f9/ADVS-6-1900528-g001.jpg

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