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March 14, 2026Advanced Functional Materials3 citations

A Comprehensive Review on Metal Halide Perovskite Photovoltaics From Precursor Chemistry Perspective

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YDYuwei DuanYWYaxin WangXZXun Zhu

Key Points

  • The review aims to examine the advancements in metal halide perovskite solar cells with a focus on precursor chemistry and its effects on performance.
  • Comprehensive analysis of current literature on metal halide perovskite solar cells.
  • Focus on the role of precursor chemistry in enhancing crystallization.
  • Discussion of the impact of polymerization of bulk additives on device performance.
  • Power conversion efficiency of single-junction PSCs exceeds 27.0%.
  • Operational stability of lab-scale PSCs has surpassed ten thousand hours.
  • Improved crystallization and stability attributed to high-quality precursor chemistry.

Abstract

ABSTRACT Metal halide perovskite solar cells (PSCs) have achieved remarkable advancements in power conversion efficiency (PCE) and operational stability. As of now, the certified PCE of single‐junction PSCs has skyrocketed to over 27.0%, and the operational stability of lab‐scale PSCs has now extended beyond ten of thousand hours. The improvements are attributed to the stabilized perovskite precursor and high‐quality crystallized films. In this review, we provide a comprehensive review of the recent evolution of PSCs, focusing on the perovskite precursor chemistry and its impact on crystallization modulation, including precursor chemistry related to methylammonium, formamidinium, iodide, lead, and precursor solvent‐related reactions. Additionally, the in situ polymerization of bulk additives in the precursor and their role in stabilizing grain boundaries and suppressing lead leakage are also discussed. Finally, the development prospects of metal halide perovskite photovoltaics are outlined.

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Cite This Study

Duan et al. (2026) studied this question.

synapsesocial.com/papers/69b4fb9db39f7826a300bf14https://doi.org/10.1002/adfm.202532048
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