New hybrid semiconducting CdSe and Fe doped CdSe quantum dots based electrochemical capacitors

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Date

2022

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Elsevier Ltd

Abstract

In this study, pure and Fe-doped CdSe (Fe@CdSe) quantum dots (QDs) in various concentrations have been prepared via the chemical co-precipitation method. The PXRD, FT-IR, UV–vis spectroscopy, and HR-TEM micrographs have been utilized to confirm the structural, optical, and morphological features of as-synthesized QDs. The optical bandgap values of pure and Fe@CdSe QDs have been found to vary from 2.12 eV to 1.82 eV, as determined by the Tauc relation, and the absorption spectrum of pure and Fe@CdSe QDs exhibits a blue shift compared to the bulk CdSe. Moreover, three-electrode configuration systems have been employed to characterize the electrochemical properties of pure and Fe@CdSe QDs. Notably, the areal capacitance of pure CdSe is 47 mFcm−2, which considerably increases to ∼73 mFcm−2 for 6 mol.% Fe@CdSe QDs QDs at a scan rate of 5 mVs−1. © 2022 Elsevier B.V.

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Keywords

Absorption spectroscopy, Cadmium compounds, II-VI semiconductors, Iron, Nanocrystals, Precipitation (chemical), Semiconducting selenium compounds, Semiconductor quantum dots, Transmission electron microscopy, CdSe quantum dots, Chemical coprecipitation method, Electrochemical capacitor, Fe-doped, Fe: cdse, Optical-, Structural feature, TEM micrographs, UV-optical, UV/ Vis spectroscopy, Supercapacitor

Citation

Materials Science and Engineering: B, 2022, 286, , pp. -

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