Issue 48, 2024

ZnO2–SnO2: a new, efficient heterojunction composite for the rapid and enhanced photocatalytic degradation of rhodamine B dye and moxifloxacin under UV irradiation and sunlight

Abstract

In this study, ZnO2 nanoparticles and a neoteric ZnO2–SnO2 composite were successfully prepared for the investigation of photocatalytic degradation of dye and pharmaceutical contaminants. Various characterization techniques were employed to analyse the as-prepared photocatalysts. The degradation involves the irradiation of light on materials, resulting in the generation of charge-carrier pairs (e–h+), which react with O2 and H2O to produce reactive oxygen species (ROS), namely, ˙O2 and ˙OH, which decontaminate pollutants. The photocatalytic activity of the as-prepared catalysts was tested for the degradation of rhodamine B (Rh B) dye and the pharmaceutical antibiotic moxifloxacin (MOX). Results indicate that the new composite-catalyst outperforms ZnO2 in the degradation of Rh B and MOX, which can be attributed to the better separation and transfer of photoexcited charge carriers, thereby achieving degradation percentages of 96.4% in 30 minutes for Rh B and 95.1% in 20 minutes for MOX after UV light irradiation. However, under natural sunlight, the degradation percentages of Rh B and MOX were 96.2% in 105 minutes and 77.5% in 90 minutes, respectively. The degradation rates of the composite-catalyst were found to be 2.3 and 4.75 times higher than that of ZnO2 for Rh B and MOX, respectively. Furthermore, scavenging activity was tested, which reveals that ˙OH radicals predominantly contribute to the degradation of the contaminants. The Rh B degradation pathway was studied using HR-MS technique, and toxicity assessment was performed using ECOSAR software. More importantly, the present study highlights the performance of the catalyst ZnO2–SnO2, which is reported for the first time.

Graphical abstract: ZnO2–SnO2: a new, efficient heterojunction composite for the rapid and enhanced photocatalytic degradation of rhodamine B dye and moxifloxacin under UV irradiation and sunlight

Supplementary files

Article information

Article type
Paper
Submitted
12 Jul 2024
Accepted
02 Oct 2024
First published
03 Oct 2024

New J. Chem., 2024,48, 20126-20139

ZnO2–SnO2: a new, efficient heterojunction composite for the rapid and enhanced photocatalytic degradation of rhodamine B dye and moxifloxacin under UV irradiation and sunlight

I. Manzoor and V. R., New J. Chem., 2024, 48, 20126 DOI: 10.1039/D4NJ03148B

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