Ethacridine lactate additive engineering for defect passivation in HTL-free carbon electrode perovskite solar cells
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Ethacridine lactate additive engineering for defect passivation in HTL-free carbon electrode perovskite solar cells

21.07.2026 HEP Journals

Hole-transport-layer (HTL)-free carbon electrode perovskite solar cells (C-PSCs) are promising candidates for low-cost photovoltaic applications, but their performance is still limited by defect-induced recombination and insufficient long-term stability.

Bonsu et al. recently proposed the use of ethacridine lactate (EAL) (C15H16N3O4) in the preparation of the solution containing perovskite precursors as an additive in carbon electrode HTL-free mixed organic–inorganic PSCs. In contrast to the previous study mainly focused on inverted inorganic PSCs, this research reveals that the EAL-modified films have improved morphology and reduced defect density, resulting in enhanced photovoltaic performance. The optimized device delivers a power conversion efficiency of 16.54% and retains 80% of its initial efficiency after 1200 h without encapsulation. This work highlights an effective additive-engineering strategy for achieving efficient and stable HTL-free carbon electrode PSCs, which is reported by Frontiers of Materials Science.

DOI
10.1007/s11706-026-0774-z
https://doi.org/10.1007/s11706-026-0774-z
Article Title:
Ethacridine lactate additive engineering for defect passivation in HTL-free carbon electrode perovskite solar cells
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21.07.2026 HEP Journals
Regions: Asia, China
Keywords: Science, Chemistry

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