| Literature DB >> 36132265 |
K Raagulan1,2, M M M G P G Mantilaka1,3, G T D Chandrakumara3, U G Mihiri Ekanayake1,3, W P S L Wijesinghe1,3, Shanmuganathan Ehanathan1, R M G Rajapakse1,4, Ramanaskanda Braveenth2, Kyu Yun Chai2.
Abstract
Sunlight active U3O8@ZnO nanocomposite photocatalyst has been synthesized for the first time using co-precipitation method. The synthesized composite has a particle size ranging from 18 nm to 30 nm with band gap energy of 2.9 eV. The composite photocatalyst is capable of degrading methylene blue completely within 30 min under sunlight irradiation. Therefore, this superfast efficient sunlight-active photocatalyst is very useful in industrial organic waste water treatment. This journal is © The Royal Society of Chemistry.Entities:
Year: 2018 PMID: 36132265 PMCID: PMC9473160 DOI: 10.1039/c8na00051d
Source DB: PubMed Journal: Nanoscale Adv ISSN: 2516-0230
Fig. 1(a) FT-IR spectrum of UO2(OH)2/Zn(OH)2. CTAB (b) XRD pattern of the synthesized U3O8@ZnO nanocomposite.
Fig. 2EDX (a) mapping and (b) spectrum of U3O8@ZnO nanocomposite.
Fig. 3SEM images of U3O8@ZnO nanocomposite.
Fig. 4Solid state UV-vis based Tauc plot of U3O8@ZnO nanocomposite.
Fig. 5UV-vis spectra of MB under different time periods of sunlight exposure with U3O8@ZnO nanocomposite catalyst.
Fig. 6(a) Degradation kinetics and (b) before and after degradation of MB by the synthesized U3O8@ZnO catalyst.