Synergistic photocatalysis: unveiling the enhanced degradation of Methyl Orange by MoS2 nanosheets decorated with silver nanoparticles under natural sunlight
This work presents a comprehensive investigation into the photocatalytic degradation of Methyl Orange (MO) using MoS 2 nanosheets and silver-decorated MoS 2 (Ag-MoS 2 ) nanosheets. Hydrothermally synthesized MoS 2 nanosheets and Ag-MoS 2 nanosheets were characterized through Field emissions scanning...
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Veröffentlicht in: | Hyperfine interactions 2024-11, Vol.245 (1), Article 355 |
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Sprache: | eng |
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Zusammenfassung: | This work presents a comprehensive investigation into the photocatalytic degradation of Methyl Orange (MO) using MoS
2
nanosheets and silver-decorated MoS
2
(Ag-MoS
2
) nanosheets. Hydrothermally synthesized MoS
2
nanosheets and Ag-MoS
2
nanosheets were characterized through Field emissions scanning electron microscopy (FESEM), X-ray diffraction (XRD), UV-Vis absorption spectroscopy, and Fourier Transformation Infrared spectroscopy (FTIR). FESEM images revealed the synthesis of a well-shaped nanosheet-like structure within the dimensions of nano range and EDX confirmed the formation of Ag-MoS
2
nanocomposite. The characteristic XRD peaks of as-synthesized MoS
2
nanosheets were observed around 14
0
, 33
0
, and 60
0
corresponding to (002), (100), and (110) planes. The Ag-MoS
2
nanocomposite showed a similar diffraction pattern. UV-vis absorption spectrum showed peak of around 511 nm and 622 nm. Ag-MoS
2
showed a redshift in the UV-vis spectrum. The band gap for pure MoS
2
nanosheets and Ag-MoS
2
nanosheets is calculated using tauc’s plot and found to be 2.9 eV and 2.7 eV respectively. The photocatalytic activities of MoS
2
nanosheets and silver-decorated MoS
2
nanosheets were evaluated under natural Sunlight. The Ag-MoS
2
nearly degraded 74% of MO while pristine MoS
2
nanosheets degraded only around 40% of MO in 90 min under natural sunlight. The synergistic effects of MoS
2
and silver nanoparticles were explored to provide insights into the enhanced photocatalytic performance. |
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ISSN: | 3005-0731 0304-3843 3005-0731 1572-9540 |
DOI: | 10.1007/s10751-024-02197-1 |