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) (C
15H
16N
3O
4) 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