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Cited 29 time in webofscience Cited 28 time in scopus
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Catalytic degradability of p-nitrophenol using ecofriendly silver nanoparticlesopen access

Authors
Shimoga, G.Palem, R.R.Lee, S.-H.Kim, S.-Y.
Issue Date
Dec-2020
Publisher
MDPI AG
Keywords
Anthropogenic; Bioreductant; Environmental remediation; Heterogeneous catalysis; P-nitrophenol; Plant extract; Silver nanoparticles
Citation
Metals, v.10, no.12, pp 1 - 20
Pages
20
Indexed
SCIE
SCOPUS
Journal Title
Metals
Volume
10
Number
12
Start Page
1
End Page
20
URI
https://scholarworks.dongguk.edu/handle/sw.dongguk/7082
DOI
10.3390/met10121661
ISSN
2075-4701
2075-4701
Abstract
In an effort to produce non-toxic and economically viable “green” protocols for waste water treatment, researchers are actively involved to develop versatile and effective silver nanoparticles (SNPs) as nano-catalyst from bio-based techniques. Since, p-nitrophenol (PNP) is one of the anthropogenic contaminants, considerable attention has been focused in catalytic degradability of PNP in wastewater treatment by curtailing serious effect on aquatic fauna. Ingestion of contaminants by aquatic organisms will not only affect the aquatic species but is also a potential threat to human health, especially if the toxic contaminants are involved in food chain. In this short report, we provided a comprehensive insight on few remarkable nanocatalysts especially based on SNPs and its biopolymer composites synthesized via ecofriendly “green” route. The beneficiality and catalytic performance of these silver nanocatalysts are concisely documented on standard model degradation reduction of PNP to p-aminophenol (PAP) in the presence of aqueous sodium borohydride. The catalytic degradation of PNP to PAP using SNPs follows pseudo first order kinetics involving six-electrons with lower activation energy. Furthermore, we provided a list of highly effective, recoverable, and economically viable SNPs, which demonstrated its potential as nanocatalysts by focusing its technical impact in the area of water remediation. © 2020 by the authors. Licensee MDPI, Basel, Switzerland.
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