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Development of a Single-Layer TiO₂ Photoanode for Dye-Sensitized Solar Cell (DSSC)

S.S. SharipbaevDepartment of Energy Engineering, Namangan State Technical University, Namangan, UzbekistanO.O. MamatkarimovNamangan State Technical University, Namangan, UzbekistanN. Yu. SharibaevNamangan State Technical University, Namangan, UzbekistanA.A. AbdukarimovNamangan State Technical University, Namangan, UzbekistanA.K. ArofCenter for Ionics, Department of Physics, University of Malaya, Kuala Lumpur, Malaysia
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Dye-sensitized solar cells (DSSC) are considered a promising low-cost and flexible alternative to conventional silicon-based photovoltaic technologies. This work reports the fabrication and analysis of DSSC based on a single-layer nanostructured TiO₂ photoanode. The proposed cell architecture is simplified by eliminating the conventional double-layer configuration, which reduces fabrication complexity and material consumption. The electrochemical and photovoltaic characteristics of the devices were systematically investigated. The energy conversion efficiency of the developed single-layer design is approximately twice that of a conventional two-layer cell. The performance enhancement is attributed to reduced internal resistance, improved electron transport, and suppressed charge recombination. The results demonstrate the potential of simplified single-layer DSSC architectures for transparent, flexible, and low-cost energy-harvesting applications.

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