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March 14, 2026Nanoscale2 citationsOpen Access

Rational design of self-assembled monolayer composition for efficient perovskite/Si tandem solar cells

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MKMinjung KimSPS. H. ParkGHGeon Pyo Hong

Key Points

  • To investigate the role of self-assembled monolayers in enhancing charge extraction in perovskite/Silicon tandem solar cells.
  • Developed a wide-bandgap perovskite single-junction solar cell using a co-adsorption strategy
  • Utilized commercial self-assembled monolayers MeO-4PACz and Br-4PACz
  • Examined the effects of mixed-SAMs on energy level alignment and defect passivation
  • Achieved 19.72% efficiency for the optimal single-junction perovskite solar cell
  • Integrated with a Si bottom cell to realize a tandem cell efficiency of 28.02%
  • Demonstrated enhanced open-circuit voltage and fill factor due to SAM implementation

Abstract

Efficient charge extraction at the interface is essential for achieving high-performance perovskite/Si tandem solar cells. Here, we demonstrate a highly efficient wide-bandgap perovskite single-junction solar cell using a co-adsorption strategy of commercial self-assembled monolayers (SAMs), specifically MeO-4PACz and Br-4PACz. Mixed-SAMs, with electron-withdrawing Br functional groups, induce a larger dipole moment and a downward shift in the HOMO level, thereby promoting favorable energy level alignment with a wide-bandgap perovskite. It further passivates interfacial defects, suppressing non-radiative recombination. This combined effect enables effective hole transport at the SAM/perovskite interface, enhancing the open-circuit voltage and fill factor of the perovskite device. Accordingly, the optimal single-junction perovskite solar cell exhibits an efficiency of 19.72%. By integrating this cell with a Si bottom cell, we achieve a tandem solar cell efficiency of 28.02%. This study provides a universal strategy to design SAM-based interfacial layers in p-i-n perovskite and tandem solar cells.

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Cite This Study

Kim et al. (2026) studied this question.

synapsesocial.com/papers/69b4adb518185d8a398016e2https://doi.org/10.1039/d5nr04517g
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