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Pharmaceutical pollutant as sacrificial agent for sustainable synergistic water treatment and hydrogen production via novel Z- scheme Bi7O9I3/B4C heterojunction photocatalysts

Authors
Rana, AnamikaKumar, AmitSharma, GauravNaushad, MuBathula, ChinnaStadler, Florian J.
Issue Date
1-Dec-2021
Publisher
ELSEVIER
Keywords
Hydrogen production; Photocatalysis; Pharmaceutical pollutant; Z-scheme; Heterojunction
Citation
JOURNAL OF MOLECULAR LIQUIDS, v.343
Indexed
SCIE
SCOPUS
Journal Title
JOURNAL OF MOLECULAR LIQUIDS
Volume
343
URI
https://scholarworks.dongguk.edu/handle/sw.dongguk/3946
DOI
10.1016/j.molliq.2021.117652
ISSN
0167-7322
1873-3166
Abstract
The dual-function photocatalytic systems with a promising capability for hydrogen evolution and simultaneous pollutant degradation are surely a significant step towards waste-to-energy conversion goals. However, the performance of such photocatalysts is often limited by poor visible-light activity, charge separation and surface reverse reaction involving photogenerated electrons and radicals/intermediates. In this work, we report hydrothermal synthesis of novel Bi7O9I3/B4C (BIBC) heterojunction photocatalyst for advanced Norfloxacin antibiotic degradation with simultaneous hydrogen evolution under visible light. In particular, BIBC-30 heterojunction shows H-2 evolution rate of 812 mu mol g(-1) h(-1) with simultaneous 94.2% NFN removal which are much higher than bare B4C (similar to 6 times) and Bi7O9I3 (similar to 4 times). Under oxic/aerobic conditions too, a high 456.3 mu mol g(-1) h(-1) H-2 evolution with nearly complete norfloxacin degradation was achieved. The low band gap of Bi7O9I3 and presence of metallic Bi degrees extends the absorbance to NIR region and B4C enlarges the surface area of junction along with suppression of the back reaction. It was observed that BIBC heterojunction exhibits manifolds H-2 evolution rate with NFN as sacrificial agent (18.3% apparent quantum efficiency) is manifolds higher than pure water, methanol, triethanolamine and rhodamine B. An effective Z-scheme charge transfer facilitated by Bi degrees is active in the intimately coupled heterojunction with suitably placed energy bands. This work shows that waste to energy conversion can be promisingly achieved by performing H-2 evolution and pollutant removal simultaneously. (C) 2021 Elsevier B.V. All rights reserved.
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