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Updated: Sep 15, 2025

Well-aligned Vertically Oriented ZnO Nanorod Arrays and their Application in Inverted Small Molecule Solar Cells
Published on: April 25, 2018
Enhancing perovskite solar cell efficiency: ZnO-WO3 as an electron transport layer to minimize recombination losses
Ali Mujtaba1, M I Khan1, Mongi Amami2
1Department of Physics, The University of Lahore Lahore 54000 Pakistan muhammad.iftikhar@phys.uol.edu.pk.
Abstract:
Tungsten trioxide (WO3), with strong electron affinity and recombination suppression, serves as an effective electron transport layer (ETL). Incorporating zinc oxide (ZnO) enhances its conductivity, forming a ZnO-WO3 composite with improved charge extraction and energy level alignment. The novelty of this study is to introduce ZnO-WO3 as an interlayer ETL in CsPbIBr2-based perovskite solar cells, enabling superior device performance and stability. Both WO3 and ZnO-WO3 films were synthesized via sol-gel spin coating. X-ray diffraction (XRD) confirmed the monoclinic phase for both films, with ZnO-WO3 exhibiting a larger crystallite size (67.7 nm) and lower dislocation density (2.18 × 1014 lines per m). Raman spectroscopy revealed additional ZnO vibrational modes, indicating lattice reinforcement and enhanced structural integrity. Scanning electron microscopy (SEM) shows that ZnO-WO3 films have larger, more uniform grains and smoother morphology than WO3, indicating improved film quality. UV-vis analysis showed a redshift and reduced bandgap (2.74 eV), while PL spectra indicated lower defect-related recombination. Time-resolved photoluminescence (TRPL) shows reduced average decay time for ZnO-WO3, indicating faster carrier dynamics. Devices with ZnO-WO3 achieved a power conversion efficiency of 12.87% due to reduced charge transfer resistance (21 Ω) and higher recombination resistance (4605 Ω), as confirmed by electrochemical Impedance Spectroscopy (EIS). External Quantum Efficiency (EQE) of 95% further demonstrated enhanced charge collection, establishing ZnO-WO3 as a promising ETL for high-efficiency PSCs.
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