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Solar Cell Efficiency Enhancement Via Mulberry Molasses-Based Carbon Quantum Dot-Supported CdS and CdS-Mn Nanomaterials

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Springer Science and Business Media LLC

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PurposeThe main objective of this study was to fabricate novel mulberry molasses-based carbon quantum dot supported cadmium sulphide (CQD@CdS) and cadmium sulphide-manganese (CQD@CdS-Mn) nanomaterials and to investigate the feasibility of using these nanomaterials as sensitizers to improve the efficiency of solar cells.MethodsThe fabrication of mulberry molasses-based CQDs, CQD@CdS and CQD@CdS-Mn nanomaterials was carried out by the hydrothermal method. The as-prepared CQD@CdS and CQD@CdS-Mn nanomaterials were characterized by X-ray diffraction (XRD), transmission electron microscopy (TEM), Fourier transform infrared (FTIR), Brunauer-Emmett-Teller (BET), X-ray photoelectron spectroscopy (XPS) and ultraviolet-visible (UV-Vis) techniques.ResultsThe successful preparation of CQD@CdS and CQD@CdS-Mn nanomaterials was confirmed by XRD, TEM, FTIR, BET, XPS and UV-Vis analyses. The obtained results revealed remarkably encouraging trends in terms of energy conversion efficiency. Specifically, the solar cells incorporating the CQD@CdS nanomaterial exhibited an efficiency value of 2.17%. Equally noteworthy, the solar cells incorporating the CQD@CdS-Mn nanomaterials demonstrated a higher efficiency of 2.33%.ConclusionsOur study marks a significant advancement in the synthesis and characterization of mulberry molassesbased carbon quantum dots (CQDs) supported CdS and CdS-Mn nanomaterials for solar cell applications. The efficiency values obtained for CQD@CdS and CQD@CdS-Mn nanomaterials, 2.17% and 2.33% respectively, underscore their potential as promising sensitizers in photovoltaic devices. CQD@CdS and CQD@CdS-Mn nanomaterials were successfully fabricated.Various techniques were used to characterize the fabricated nanomaterials in detail.Current density-voltage (J-V) measurements were performed on solar cell devices.CQD@CdS and CQD@CdS-Mn exhibited high efficiencies of 2.17% and 2.33%, respectively.
This work was supported by Siirt University Scientific Research Projects Coordination Unit under Project Number 2021-SIUEMUEH-12.
Siirt University Scientific Research Projects Coordination Unit; [2021-SIUEMUEH-12]

Tanım

Dergi veya Seri

Waste and Biomass Valorization

ISSN

1877-2641

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CLOSED

Anahtar Kelimeler

Carbon quantum dots, Solar cell devices, Current density-voltage (J-V) measurements, Sensitizing materials

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