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Organic functional materials: recent advances in all-inorganic perovskite solar cells

DOI:10.1039/D0SE00214C 期刊:Sustainable Energy & Fuels 出版年份:2020 更新时间:2025-09-19 17:13:59
摘要: Although the power conversion e?ciency (PCE) of organic–inorganic hybrid perovskite solar cells (PSCs) is comparable to those of commercial solar cells, a challenging problem of instability hampers their further commercialization. In recent years, in comparison with organic–inorganic hybrid PSCs, cesium-based all-inorganic perovskites show better light, moisture and especially thermal stability, and therefore they have exhibited great potential and received widespread attention. However, an unavoidable issue is that the PCE of all-inorganic PSCs still lags behind that of hybrid perovskite devices. To solve this problem, some organic or inorganic interlayer materials are introduced into all-inorganic PSCs as additive, passivation agent and charge transport materials to improve device performance. Compared to inorganic materials, organic materials present some advantages, such as energy level controllability, molecular structure diversity, and surface wettability modi?cations. Thus, the PCE of all-inorganic PSCs has been signi?cantly improved through the use of organic materials. In this review, we summarized the recent strategies for improving the performance of all-inorganic PSCs through organic interlayer materials, including crystallization control, defect passivation, interface engineering, and expanding the light harvesting capability. Finally, a perspective on challenges and opportunities is proposed in the ?eld.
作者: Lulu Wang,Bingbing Fan,Bing Zheng,Zhibing Yang,Lijun Huo,Penggang Yin
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To summarize recent strategies for improving the performance of all-inorganic perovskite solar cells (PSCs) through organic interlayer materials, including crystallization control, defect passivation, interface engineering, and expanding the light harvesting capability.

The review concludes that organic interlayer materials offer significant advantages for improving the performance and stability of all-inorganic PSCs, but further research is needed to overcome the remaining challenges and fully realize their potential.

The review highlights the challenges in achieving high efficiency and stability in all-inorganic PSCs, including the phase instability of cesium-based perovskites and the need for further development of organic interlayer materials to match the performance of hybrid perovskite devices.

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