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April 15, 2026ACS Applied Materials & Interfaces0 citations

Unlocking the Potential of Inverted Perovskite Solar Cells by Mastering Interface Wettability

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HWHaifeng WuXCXiaofei ChaiJCJiaye Chen

Key Points

  • This review aims to explore how controlling interface wettability can improve the performance of inverted perovskite solar cells.
  • Reviewed existing literature on interface wettability and its effects on perovskite film formation.
  • Discussed methods for regulating wettability, including interface engineering and precursor solution modifications.
  • Analyzed the relationship between wettability, crystallization, and charge transport in perovskite films.
  • Improved interface wettability correlates with better perovskite crystallization and enhanced charge transport.
  • Optimizing wettability can lead to increased device stability and overall performance of inverted PSCs.
  • Identified strategies for regulating wettability that may facilitate large-scale production and commercialization.

Abstract

Inverted perovskite solar cells (IPSCs) are gaining commercial traction due to their rising power conversion efficiency, simple manufacturing, reliable operation, and compatibility with various perovskite-based tandem devices. Yet, their performance is hindered by the quality of perovskite films, where interface wettability control is crucial in solution method film formation process preparation such as spin coating, spray coating, and trowel coating. Here, we focus on the bottom HTL (hole transport layer)─perovskite interface in p-i-n PSCs, reviewing how interface wettability impacts perovskite crystallization, charge transport/recombination, and device stability in inverted PSCs. The potential for optimizing device performance after decoding the wettability regulation mechanism was suggested. Finally, the mechanism of how wettability enhances the quality of perovskite films and device performance was analyzed though a large amount of articles summarized. The methods for regulating wettability were elaborated from three aspects: interface engineering, precursor solution engineering, and the post-treatment process. We also provide future research directions in interface wettability engineering for large-scale production and commercialization, such as developing low-cost processes and changing the thermal physical properties of the solution to adjust the interface wettability. This review offers theoretical guidance for understanding the relationship between interfacial wettability and device performance and envisions the potential path for the industrial application of inverted PSCs.

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Cite This Study

Wu et al. (2026) studied this question.

synapsesocial.com/papers/69df2b2ce4eeef8a2a6b0271https://doi.org/10.1021/acsami.6c02081
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