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Cadmium telluride (CdTe) absorber layer in solar cells (SCs) is environmentally dangerous for the toxic behavior of cadmium (Cd). Alternatively, zinc telluride (ZnTe) is deliberated as a promising PV material for its adoptable absorption coefficient, better conversion efficiency and low production cost of materials requirements. The main objective of this study is to synthesis and characterization analysis of ZnTe thin films to enhance the performance of ZnS/ZnTe solar cell. The structural, optical, morphological and compositional properties of the ZnTe thin films were investigated by X-ray diffraction, UV-visible spectroscopy, scanning electron microscopy, and energy dispersive spectroscopy. The performance of the cell was analyzed by SCAPS-1D. The XRD results showed that all the spin coated ZnTe thin films are in cubic phase. The determining optical band gap values are in the range of 1.77-2.18 eV. The SEM images indicated that the surface of ZnTe thin film annealed at 400 °C has better surface coverage area with homogeneity, good uniformity, and minimum void compared to the other annealed samples. The EDS study exhibits that all the films are Te richness with p-type conductivity. The highest power conversion efficiency (PCE) is found 17.45% with of 1.41 V, of 14.01 mA cm and FF of 88.53% for the 1184 nm optimum thickness of ZnTe and annealed at 400 °C. zinc sulfide (ZnS), indium tin oxide (ITO), platinum (Pt) and aluminum (Al) are indicated as buffer layer, transparent conductive oxide, back metal and front metal respectively of the device. All the findings confirmed that the deposited ZnTe thin films are suitable for usage as an absorber layer in thin film solar cells (TFSCs).
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http://www.ncbi.nlm.nih.gov/pmc/articles/PMC11878272 | PMC |
http://dx.doi.org/10.1039/d5ra00417a | DOI Listing |
Particulate photoelectrodes are promising for the development of innovative unbiased water-splitting devices by combining a photoanode and a photocathode. This configuration relaxes the requirements for band edge potentials of oxygen- and hydrogen-evolution systems while enhancing the solar-to-hydrogen conversion efficiency. However, particulate photocathodes often exhibit lower performance than thin-film-based photocathodes because of the difficulty of implementing functional structures.
View Article and Find Full Text PDFJ Phys Chem Lett
June 2025
Key Lab of Artificial Micro- and Nano-Structures of Ministry of Education of China, School of Physics and Technology, Wuhan University, Wuhan 430072, China.
ZnTe is a wide-bandgap semiconductor with great potential for optoelectronic applications. The performance of ZnTe-based devices is strongly influenced by the dynamics of photogenerated carriers in polycrystalline films. In this work, we investigate the charge carrier dynamics in thermally evaporated polycrystalline ZnTe films under various pump intensities using transient absorption spectroscopy.
View Article and Find Full Text PDFSci Rep
April 2025
Department of Physics, Faculty of Science, King Abdulaziz University, Jeddah, 21589, Saudi Arabia.
This study focuses on optimizing the efficiency of lead-free perovskite solar cells (PSCs) using CHNHSnI as the active layer. Various modifications were investigated to enhance the performance of the PSCs. Key adjustments included the choice of polymer as a hole-transporting material (HTM), electrode materials, device structure, and the incorporation of a thin layer of nickel oxide (NiO) as a hole-selective layer (HSL).
View Article and Find Full Text PDFJ Colloid Interface Sci
July 2025
Key Laboratory of Superlight Materials and Surface Technology (Ministry of Education), College of Material Science and Chemical Engineering, Harbin Engineering University, Harbin 150001, China. Electronic address:
The improvement in reversibility and kinetics for Zn metal anodes is crucial to facilitate the further application of aqueous zinc ion batteries. However, the abnormal surface-caused dendrites and parasitic reactions significantly impede the commercial application. Herein, we established Ohmic contact by fabricating an ultrathin semiconductor ZnTe (∼150 nm) layer on the Zn surface via magnetron sputtering to form an electron enrichment region for zinc ions attraction.
View Article and Find Full Text PDFRSC Adv
February 2025
Department of Electrical and Electronic Engineering, University of Rajshahi Rajshahi-6205 Bangladesh
Cadmium telluride (CdTe) absorber layer in solar cells (SCs) is environmentally dangerous for the toxic behavior of cadmium (Cd). Alternatively, zinc telluride (ZnTe) is deliberated as a promising PV material for its adoptable absorption coefficient, better conversion efficiency and low production cost of materials requirements. The main objective of this study is to synthesis and characterization analysis of ZnTe thin films to enhance the performance of ZnS/ZnTe solar cell.
View Article and Find Full Text PDF