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Synergistic bandgap engineering of Nd2O3/Sr0.5Zn0.5Cr2O4 heterostructures for enhanced photoanode performance in dye-sensitized solar cells

  • 01-12-2025
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Abstract

The article delves into the development and characterization of a novel Nd2O3/Sr0.5Zn0.5Cr2O4 heterostructure for use as a photoanode in dye-sensitized solar cells (DSSCs). It explores the structural, morphological, and optoelectronic properties of the composite material, highlighting the synergistic effects of combining rare-earth and spinel oxides. The study demonstrates significant improvements in light absorption, charge separation, and overall photovoltaic efficiency. The article also provides a detailed analysis of the photovoltaic performance, including current density-voltage (J-V) characteristics and incident photon-to-current conversion efficiency (IPCE) spectra. The results show that the composite photoanode achieves a power conversion efficiency (PCE) of 8.9%, outperforming both individual components. The findings suggest that the heterostructure's enhanced performance is due to optimized bandgap, strong interfacial coupling, and reduced recombination losses. This research offers valuable insights into the design of next-generation photoanodes for high-efficiency DSSCs.

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Title
Synergistic bandgap engineering of Nd2O3/Sr0.5Zn0.5Cr2O4 heterostructures for enhanced photoanode performance in dye-sensitized solar cells
Authors
V. Suganthi
B. Uthayakumar
S. Kumaran
S. Sukandhiya
J. Sasidevi
P. Srinivasan
G. Ramesh Kumar
P. Siva Karthik
Publication date
01-12-2025
Publisher
Springer US
Published in
Journal of Materials Science: Materials in Electronics / Issue 34/2025
Print ISSN: 0957-4522
Electronic ISSN: 1573-482X
DOI
https://doi.org/10.1007/s10854-025-16298-2
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