2020
DOI: 10.1016/j.renene.2020.09.081
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Enhanced solar light driven hydrogen generation and environment remediation through Nd incorporated ZnIn2S4

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Cited by 23 publications
(10 citation statements)
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“…In this scenario, elemental doping has emerged to be an effective strategy to improve the photocatalytic activity by surface modification and tuning the electronic structure . Various metallic cations like Cu 2+ , Ni 2+ , and so on are being doped to enhance the light absorption range, which helps in the improvement of photocatalytic activity. However, there is a probability of trapping the photoinduced charge carriers in the metal centers as well, which can diminish the photocatalytic yield .…”
mentioning
confidence: 99%
“…In this scenario, elemental doping has emerged to be an effective strategy to improve the photocatalytic activity by surface modification and tuning the electronic structure . Various metallic cations like Cu 2+ , Ni 2+ , and so on are being doped to enhance the light absorption range, which helps in the improvement of photocatalytic activity. However, there is a probability of trapping the photoinduced charge carriers in the metal centers as well, which can diminish the photocatalytic yield .…”
mentioning
confidence: 99%
“…The peak at 125 cm À 1 confirms the layered structure of ZnIn 2 S 4 . [37][38][39] The Raman peaks of InO x appear at 364 cm À 1 and 484 cm À 1 , which can be attributed to the stretching vibrations mode of the In-O-In and the stretching vibrations of ν(InO 6 ) octahedrons. [36,40] The post-hydrolysis treatment changed the surface composition and electronic structure as shown by the X-ray photoelectron spectroscopy (XPS) characterization (Figure S3 and Figure 1g-i).…”
Section: Resultsmentioning
confidence: 99%
“…The rhombohedral phase exhibits a strong Zn-S and In-S bond in the layer with a weaker S-S bond, with every S atom corresponding to a different layer [66]. The band structure of ZnIn2S4 has also been explored theoretically on the basis of Density Functional Theory (DFT) [55,64,67,68]. Studies suggest that ZnIn2S4 is a direct bandgap semiconductor as both VB and CB of ZnIn2S4 lie on G point of thee Brillouin zone [55].…”
Section: Crystalline Structures Of Sulfide Based Photocatalystsmentioning
confidence: 99%
“…Doping is generally considered a common strategy in boosting up the spectral response of a semiconductor. Commonly, doping an element into a semiconductor could narrow the bandgap and enhance the light-absorption ability [63,68]. Owing to the special electronic configuration of rare earth elements (REEs) with vacant f orbital, doping of rareearth ions has attracted research interest in the field of photocatalysis.…”
Section: Doping As a Strategy To Enhance Photocatalysismentioning
confidence: 99%