2023
DOI: 10.1007/s12648-023-02870-1
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Influence of Fe3+ ions on the crystallographic, optical and electrochemical performance of ZnS quantum dots

P. Sakthivel,
A. Krishnamoorthy,
I. Devadoss
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Cited by 3 publications
(2 citation statements)
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“…Notably, a broad excitonic peak emerges at 330 nm, gradually sharpening and shifting to 282 nm [57] . Comparatively, the excitonic absorption peak positions in the absorption spectra of the prepared nanostructures exhibit a slight blue shift when compared to the bulk ZnS value (334 nm) [58] . This modest blue shift in the UV‐Vis absorption spectra‘s excitonic absorption peak is attributed to the ‘quantum confinement effect’ due to the ultra‐thin dimensions of the ZnS quantum dots [59–60] .…”
Section: Resultsmentioning
confidence: 89%
See 1 more Smart Citation
“…Notably, a broad excitonic peak emerges at 330 nm, gradually sharpening and shifting to 282 nm [57] . Comparatively, the excitonic absorption peak positions in the absorption spectra of the prepared nanostructures exhibit a slight blue shift when compared to the bulk ZnS value (334 nm) [58] . This modest blue shift in the UV‐Vis absorption spectra‘s excitonic absorption peak is attributed to the ‘quantum confinement effect’ due to the ultra‐thin dimensions of the ZnS quantum dots [59–60] .…”
Section: Resultsmentioning
confidence: 89%
“…[57] Comparatively, the excitonic absorption peak positions in the absorption spectra of the prepared nanostructures exhibit a slight blue shift when compared to the bulk ZnS value (334 nm). [58] This modest blue shift in the UV-Vis absorption spectra's excitonic absorption peak is attributed to the 'quantum confinement effect' due to the ultra-thin dimensions of the ZnS quantum dots. [59][60] The UV spectra does indicates that the ZnS molecules are in aggregated state.…”
Section: Uv-visible Spectral Analysismentioning
confidence: 99%