Green Nanoremediation 2023
DOI: 10.1007/978-3-031-30558-0_4
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Fungal-Based Synthesis to Generate Nanoparticles for Nanobioremediation

N. G. Manjula,
Tajunnisa,
Vishalakshi Mamani
et al.
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Cited by 1 publication
(3 citation statements)
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“…The use of NPs to target plant pathogens appears to be a safe alternative to chemically synthesized pesticides (Kim et al, 2012). Ag NPs, with varied modes of action, are suggested to be safe agents against plant pathogens, particularly commercially relevant fungal pathogens, as compared to artificial antifungal agent (Manjula et al, 2023). Metal NPs are non-toxic, eco-friendly, and widely used as disinfectants and investigational antifungal mediators (Borehalli Mayegowda et al, 2022).…”
Section: Fungimentioning
confidence: 99%
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“…The use of NPs to target plant pathogens appears to be a safe alternative to chemically synthesized pesticides (Kim et al, 2012). Ag NPs, with varied modes of action, are suggested to be safe agents against plant pathogens, particularly commercially relevant fungal pathogens, as compared to artificial antifungal agent (Manjula et al, 2023). Metal NPs are non-toxic, eco-friendly, and widely used as disinfectants and investigational antifungal mediators (Borehalli Mayegowda et al, 2022).…”
Section: Fungimentioning
confidence: 99%
“…However, the structural and chemical characterization NPs can be carried out by XRD, energy-dispersive X-ray spectroscopy (EDX), high-angle annular dark-field imaging (HAADF), and FTIR for the phase, composition, crystallinity, chemical state (oxidation), functional groups, surface charges, and electrochemical characteristics. Zeta potential analysis can be used to determine the surface charge of NPs (Manjula et al, 2023;Mayegowda et al, 2023). The characterization of NPs for optical, electronic, and electrical properties was carried out by Raman spectroscopy and SERS for absorption, luminescence, electronic state, photoactivity, and electrical conductivities.…”
Section: Characterization Of Nanoparticlesmentioning
confidence: 99%
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