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April 19, 2026Nanotechnology0 citationsOpen Access

Synergistic defect passivation and energy band reconstruction via LiH 2 PO 4 additive for efficient inverted perovskite solar cells

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XHXiang HongXXXinqian XieCLC.M. Li

Key Points

  • To enhance the efficiency of inverted perovskite solar cells by using lithium dihydrogen phosphate as an additive.
  • Introduced lithium dihydrogen phosphate as an additive to perovskite films
  • Analyzed crystallization kinetics and electronic structure
  • Performed X-ray and ultraviolet photoelectron spectroscopy to study energy levels
  • Achieved a power conversion efficiency of 24.11%
  • Reduced non-radiative recombination
  • Enhanced open-circuit voltage and fill factor

Abstract

Inverted perovskite solar cells (PSCs) are fundamentally constrained by non-radiative recombination and energy-level mismatches. Herein, we introduce lithium dihydrogen phosphate (LiH2PO4) as a multifunctional precursor additive to regulate the crystallization kinetics and electronic structure of perovskite films. We demonstrate that LiH2PO4 not only promotes highly (100)-textured grain growth and passivates deep-level defects but also induces a global energy band reconstruction. By correlating X-ray photoelectron spectroscopies and ultraviolet photoelectron spectroscopies, we disclose that the anomalous, simultaneous increase in core-level binding energies originates from a Fermi-level-driven rigid band shift coupled with the formation of a robust interfacial dipole. This dual-action mechanism effectively suppresses non-radiative recombination and eliminates charge extraction barrier. Consequently, the optimized inverted PSCs achieve a champion power conversion efficiency of 24.11%, along with enhanced open-circuit voltage, fill factor, and long-term environmental stability.

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Cite This Study

Hong et al. (2026) studied this question.

synapsesocial.com/papers/69e470e9010ef96374d8db25https://doi.org/10.1088/1361-6528/ae607f
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