| Literature DB >> 27703212 |
Mrinmoyee Basu1, Roshan Nazir1, Pragati Fageria1, Surojit Pande1.
Abstract
An efficient Hydrogen evolution catalyst has been developed by decoratingEntities:
Year: 2016 PMID: 27703212 PMCID: PMC5050419 DOI: 10.1038/srep34738
Source DB: PubMed Journal: Sci Rep ISSN: 2045-2322 Impact factor: 4.379
Figure 1Schematic representation of the dual functionality of CuS/Au (photocatalysis under light irradiation and electrocatalytic activity under dark).
Figure 2PXRD pattern of CuS and CuS-Au-n (n = 1, 2, 3) showing the variation in the intensities of the highest intense peak of CuS and Au.
Figure 3(a) Raman spectrum of CuS only and (b) UV-vis absorption spectrum of CuS and CuS-Au-n (n = 3 only).
Figure 4FESEM image of (a) CuS stacked plates and (b) CuS-Au-3 on CuS surface. Encircled area shows attachment of small particles on CuS plates.
Figure 5Low magnification TEM image of CuS (a) and CuS-Au-3 (b). Inset shows high magnification images of very small plates of CuS and very small particles of Au on CuS surface.
Figure 6HRTEM image of (a) CuS and (b) CuS-Au-3.
Figure 7(a,b) Polarization curves for bare GC, CuS, CuS-Au-1, CuS-Au-2 and CuS-Au-3 in 0.5 M H2SO4. (c) Tafel plots of CuS, CuS-Au-1, CuS-Au-2, and CuS-Au-3, (d) Nyquist plot of CuS, CuS-Au-2 and CuS-Au-3.
Fitted Charge Transfer values of CuS, CuS-Au-2 and CuS-Au-3 on GC electrode.
| Cathode | Rs(Ω) | Rct (Ω) |
|---|---|---|
| CuS | 10.5 | 255.4 |
| CuS-Au-2 | 11.7 | 143.7 |
| CuS-Au-3 | 14.8 | 31.1 |
Figure 8Photocatalytic decomposition of MB dye by using (a) CuS (b) CuS-Au-3 catalyst: absorbance vs. wavelength plot, (c) Plot of (At/A0) vs. time for both CuS and CuS-Au-3, and (d) Plot of ln(At/A0) vs. time for both CuS and CuS-Au-3. Conditions: [MB] = 2 × 10−5 M and catalyst = 10 mg.
Figure 9Schematic representation of MB degradation under visible light irradiation on CuS decorated with Au nanoparticles.
Figure 10Schematic representation of the decoration of Au nanoparticles on CuS plates.