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September 10, 2025Nature Communications51 citationsOpen Access

Flexibility meets rigidity: a self-assembled monolayer materials strategy for perovskite solar cells

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JYJie YangGQGeping QuYQYing Qiao

Key Points

  • The study achieves a power conversion efficiency of 26.21% for small-area devices, significantly improving perovskite solar cell performance.
  • Employing self-assembled monolayer materials helps improve charge transport efficiency and reduce non-radiative recombination.
  • The synergistic design of flexible head groups and rigid linking groups establishes a promising approach for interface engineering.
  • This work provides a pathway for enhancing long-term stability and efficiency in perovskite solar cells through innovative material design.

Abstract

Self-assembled monolayer (SAM) materials have emerged as promising materials for interface engineering in perovskite solar cells. However, achieving an optimal balance between molecular packing density, charge transport efficiency, and defect passivation remains a challenge. In this work, we propose a SAM material design strategy that synergizes flexible head groups with rigid linking groups. Using (4-(diphenylamino)phenyl)phosphonic acid as a model molecule, Compared to traditional materials such as (4-(9H-carbazol-9-yl)phenyl)phosphonic acid and (4-(diphenylamino)phenethyl)phosphonic acid, our material generates a high-quality perovskite layer. This design achieves superior energy level alignment, improved hole extraction, and enhanced charge transport efficiency, effectively reducing non-radiative recombination. (4-(diphenylamino)phenyl)phosphonic acid-based device achieve power conversion efficiency of 26.21% and 24.49% for small- (0.0715 cm2) and large-area (1 cm2), respectively. This work establishes an effective approach to SAM molecular design, providing a clear pathway for improving both the efficiency and long-term stability of perovskite solar cells through interface engineering.

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Cite This Study

Yang et al. (2025) studied this question.

synapsesocial.com/papers/68c1a40254b1d3bfb60de2d0https://doi.org/10.1038/s41467-025-62388-4
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