Enhanced photodegradation of methylene blue from aqueous solution using Al-doped ZnS nanoparticles
- PMID: 35622286
- DOI: 10.1007/s11356-022-20634-y
Enhanced photodegradation of methylene blue from aqueous solution using Al-doped ZnS nanoparticles
Abstract
The post-transition semiconducting material of pure zinc sulfide (ZnS) and various concentrations of aluminum (Al) (2.5 wt%, 5.0% wt, 7.5 wt%, and 10% calcined at 200 °C) doped ZnS nanoparticles (NPs) were synthesized by sol-gel procedure. The crystal-like nature and phase structure of the product were examined by powder XRD analysis. This analysis shows that the pure ZnS nanoparticle does not form any secondary phase. The functional group of synthesized materials was analyzed by FTIR examination. The energy gap of the materials is calculated using electro-optic analysis and the Kubelka-Munk equation varies from 3.04 nm to 3.63 nm. The photoluminescence studies show the wide emissions (blue to green) for pure ZnS and Al-doped ZnS nanomaterials. The SEM images show the spherical structure and the agglomerated nanostructures. The presence of Zn, S, and Al are confirmed by EDAX spectra. From HR-TEM studies, pure ZnS and Al-doped ZnS nanoparticles exhibit uniform particle sizes. The rate of degradation was observed using MB dye. MB dye has maximum wavelength (λmax) of 664 nm. The dye degradation efficiency was improved as the dye ratio increased. Photocatalytic activities studies show the intensity of photocatalytic activities decreased for the maximum time interval. Doping of Al in ZnS boosts the photocatalytic activity. Hence, Al-doped ZnS appears to be better decomposing MB dye when exposed to visible light.
Keywords: Morphological; Nanoparticles; Optical properties; Photocatalytic activities; Semiconducting material.
© 2022. The Author(s), under exclusive licence to Springer-Verlag GmbH Germany, part of Springer Nature.
References
-
- Attaf A, Derbali A, Saidi H, Benamra H, Aida MS, Attaf N, Ezzaouia H, Derbali L (2020) Physical properties of Pb doped ZnS thin films prepared by ultrasonic spray technique. Physics Letters A 384–126199
-
- Avci B, Caglar Y, Caglar M (2019) Controlling of surface morphology of ZnO nanopowders via precursor material and Al doping. Mater Sci Semiconductor Process. 99:149–158 - DOI
-
- Azmand A, Kafashan H (2019) Al-doped ZnS thin films: physical and electrochemical characterizations. J All Com 30:779–713
-
- Bansal P, Sud D (2011) Photodegradation of commercial dye Procion Blue HERD from real textile wastewater using nanocatalysts. Desalination 15:267–269
-
- Basha SJ, Khidhirbrahmendra V, Madhavi J, Thampy UU, Reddy CV, Ravikumar RV (2019) Structural, optical, magnetic and thermal investigations on Cr3+ ions doped ZnS nanocrystals by co-precipitation method. J Sci Adv Mater Dev 1:260–266
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