2012 ©
             Publication
Journal Publication
Title of Article Solar light-driven photocatalyst based on bismuth molybdate (Bi4MoO9) for detoxification of anionic azo dyes in wastewater 
Date of Acceptance 24 November 2020 
Journal
     Title of Journal Journal of Materials Science: Materials in Electronics 
     Standard SCOPUS 
     Institute of Journal Springer New York 
     ISBN/ISSN 09574522, 1573482X 
     Volume 2021 
     Issue 32 
     Month January
     Year of Publication 2021 
     Page 1977–1991 
     Abstract One of the most important challenges in photocatalysis research is to develop a new photocatalyst with an excellent solar light-harvesting capacity and a very high electron–hole separation efficiency. Herein, a bismuth molybdate (Bi4MoO9) photocatalyst has been successfully prepared by a facile and capping agent-free chemical precipitation technique without using of any expensive reagent or surfactant. It is simple, catalyst-free, and easily fabricated. The prepared Bi4MoO9 photocatalyst belongs to the face-centered cubic phase with an energy bandgap of 3.18 eV and spherical morphology of 64 nm. The photocatalyst provided the efficiency about 70% and 100% toward photodegradation of reactive red 141 (RR141) dye and Congo red (CR) dye, respectively. Interestingly, the photocatalyst showed an enhanced solar light-driven photoactivity of 100% toward degradation of Congo red (CR) dye in 30 min. The degradation reaction followed the first-order kinetics. Electron and hole played a vital role in dye degradation. The chemical structure of the photocatalyst remained stable after five cycles. The photocatalyst retains its original efficiency even after the fifth run implying the advantages of stability and reusability. The prepared Bi4MoO9 will be suitable for degradation of toxic dyes in the environmental protection. The present finding offers a new avenue for fabrication of solar light-responsive photocatalyst for detoxification of organic pollutants. 
     Keyword Bi4MoO9, Photocatalytic degradation, Organic azo dyes, Antibiotics 
Author
627020027-4 Mr. TAMMANOON CHANKHANITTHA [Main Author]
Science Doctoral Degree

Reviewing Status มีผู้ประเมินอิสระ 
Status ตีพิมพ์แล้ว 
Level of Publication นานาชาติ 
citation true 
Part of thesis true 
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