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Strained hybrid perovskite thin films and their impact on the intrinsic stability of perovskite solar cells

机译:应变混合钙钛矿薄膜及其对钙钛矿太阳能电池固有稳定性的影响

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摘要

Organic-inorganic hybrid perovskite (OIHP) solar cells have achieved comparable efficiencies to those of commercial solar cells, although their instability hinders their commercialization. Although encapsulation techniques have been developed to protect OIHP solar cells from external stimuli such as moisture, oxygen, and ultraviolet light, understanding of the origin of the intrinsic instability of perovskite films is needed to improve their stability. We show that the OIHP films fabricated by existing methods are strained and that strain is caused by mismatched thermal expansion of perovskite films and substrates during the thermal annealing process. The polycrystalline films have compressive strain in the out-of-plane direction and in-plane tensile strain. The strain accelerates degradation of perovskite films under illumination, which can be explained by increased ion migration in strained OIHP films. This study points out an avenue to enhance the intrinsic stability of perovskite films and solar cells by reducing residual strain in perovskite films.
机译:尽管有机-无机杂化钙钛矿(OIHP)的不稳定性阻碍了它们的商业化,但其效率已达到与商用太阳能电池相当的效率。尽管已开发出封装技术来保护OIHP太阳能电池免受外界刺激(例如湿气,氧气和紫外线)的影响,但仍需要了解钙钛矿薄膜内在不稳定性的起因,以提高其稳定性。我们表明,通过现有方法制造的OIHP膜是应变的,并且该应变是由于在热退火过程中钙钛矿膜和基板的热膨胀失配引起的。多晶膜具有在面外方向上的压缩应变和面内拉伸应变。应变加速了钙钛矿薄膜在光照下的降解,这可以用应变OIHP薄膜中离子迁移的增加来解释。这项研究指出了通过减少钙钛矿膜中的残余应变来增强钙钛矿膜和太阳能电池的固有稳定性的途径。

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