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用于热稳定、高效钙钛矿太阳能电池的组成工程,其功率转换效率超过 20%,85°C/85%稳定性超过 1000 小时。

Compositional Engineering for Thermally Stable, Highly Efficient Perovskite Solar Cells Exceeding 20% Power Conversion Efficiency with 85 °C/85% 1000 h Stability.

机构信息

Technology Innovation Division, Institute for Energy and Material/Food Resources, Panasonic Corporation, 3-1-1 Yagumo-naka-machi, Moriguchi, Osaka, 570-8501, Japan.

出版信息

Adv Mater. 2019 Mar;31(10):e1806823. doi: 10.1002/adma.201806823. Epub 2019 Jan 11.

Abstract

Perovskite solar cells have received great attention because of their rapid progress in efficiency, with a present certified highest efficiency of 23.3%. Achieving both high efficiency and high thermal stability is one of the biggest challenges currently limiting perovskite solar cells because devices displaying stability at high temperature frequently suffer from a marked decrease of efficiency. In this report, the relationship between perovskite composition and device thermal stability is examined. It is revealed that Rb can suppress the growth of PbI even under PbI -rich conditions and decreasing the Br ratio in the perovskite absorber layer can prevent the generation of unwanted RbBr-based aggregations. The optimized device achieved by engineering perovskite composition exhibits 92% power conversion efficiency retention in a stress test conducted at 85 °C/85% relative humidity (RH) according to an international standard (IEC 61215) while exceeding 20% power conversion efficiency (certified efficiency of 20.8% at 1 cm ). These results reveal the great potential for the practical use of perovskite solar cells in the near future.

摘要

钙钛矿太阳能电池因其效率的快速提升而受到广泛关注,目前其已认证的最高效率为 23.3%。实现高效率和高热稳定性是目前限制钙钛矿太阳能电池的最大挑战之一,因为在高温下稳定的器件通常会导致效率显著下降。在本报告中,研究了钙钛矿组成与器件热稳定性之间的关系。结果表明,Rb 可以抑制 PbI 的生长,即使在 PbI 丰富的条件下也是如此,而降低钙钛矿吸收层中的 Br 比例可以防止产生不必要的 RbBr 基聚集体。通过优化钙钛矿组成,优化后的器件在根据国际标准(IEC 61215)进行的 85°C/85%相对湿度(RH)的压力测试中保留了 92%的功率转换效率,同时超过 20%的功率转换效率(在 1 cm 时认证效率为 20.8%)。这些结果表明,钙钛矿太阳能电池在不久的将来具有很大的实际应用潜力。

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