4.7 Article

Ecofriendly and low-cost synthesis of ZnO nanoparticles from Acremonium potronii for the photocatalytic degradation of azo dyes

期刊

ENVIRONMENTAL RESEARCH
卷 202, 期 -, 页码 -

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ACADEMIC PRESS INC ELSEVIER SCIENCE
DOI: 10.1016/j.envres.2021.111700

关键词

Zinc oxide nanoparticles (ZnO NPs); Acremonium potronii photocatalysis; Kinetic studies; Dye removal; Catalytic degradation

资金

  1. King Saud University, Riyadh, Saudi Arabia [RSP-2021/364]

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Nanoparticles are widely used in various fields due to their unique properties such as size and surface ratio. This study synthesized zinc oxide nanoparticles with sizes ranging between 13 and 15 nm using a new fungal species and demonstrated their catalytic activity in dye degradation.
Nanoparticles (NPs) have enormous applications in every field of science by their particular size, diverse morphology, and higher surface-ratio, which provide them for unique properties. Nanosized materials can be used to overcome almost every challenge in science. The development of nanoscience, metal or metal oxide NPs have emerged as promising materials. Especially, zinc oxide nanoparticles (ZnO NPs) have remarkable appli-cations in diverse fields including cosmetic, optical, and electrical fields, biomedicine, and catalysis. Several cost-effective strategies using different chemicals, plants, and microbes mediated ZnO NPs are reported in several studies, among which fungal-mediated approaches have gained tremendous interest due to their eco-friendly and simple protocols. In this study, we report the formation of ZnO NPs with sizes ranging between 13 and 15 nm usingAcremonium potronii, a new fungal species found in fruits, soil, and marine environments. The obtained ZnO NPs are characterized by several analytical techniques, and their catalytic activity in the degradation of meth-ylene blue dye is investigated, including a kinetic study to investigate the rate of degradation process. The ZnO NPs can degrade about 93% of the dye. This work demonstrates the potential of the synthesized ZnO NPs as dye removal catalysts and offers a platform for the application of A. potronii.

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