2015
DOI: 10.1016/j.jmau.2014.10.004
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Ultrastructures of silver nanoparticles biosynthesized using endophytic fungi

Abstract: Three endophytic fungi Aspergillus tamarii PFL2, Aspergillus niger PFR6 and Penicllium ochrochloron PFR8 isolated from an ethno-medicinal plant Potentilla fulgens L. were used for the biosynthesis of silver nanoparticles. Scanning and transmission electron microscopic analysis were performed to study the structural morphology of the biosynthesized silver nanoparticles. The electron microscopy study revealed the formation of spherical nanosized silver particles with different sizes. The nanoparticles synthesize… Show more

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Cited by 149 publications
(43 citation statements)
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“…2) which was also well reported in literature. 25 The position of absorption peak validates that the green synthesized Ag-NPs have a cubic face-centered crystal structure. Fig.…”
Section: A Uv-visible Spectroscopy Studiesmentioning
confidence: 52%
“…2) which was also well reported in literature. 25 The position of absorption peak validates that the green synthesized Ag-NPs have a cubic face-centered crystal structure. Fig.…”
Section: A Uv-visible Spectroscopy Studiesmentioning
confidence: 52%
“…SSR15 y B. cereus SSR1 mostraron muy alta tolerancia. Este metal es tóxico para las bacterias porque forman complejos con el azufre (Ahemad 2014), esta actividad antibacteriana está siendo rescatada por la nanotecnología y se están estudiando algunos hongos tolerantes capaces de formar nanopartículas de plata (Devi & Joshi 2015, Majeed et al 2017.…”
Section: Resultados Y Discusiónunclassified
“…4). The capping agent's (protein) function in the stabilization of nanoparticles is confirmed by the less direct connection between the produced nanoparticles (Devi and Joshi 2015). The acquired micrographs exposed the collection of the biosynthesized AgNPs to be approximately spherical in shape inside diameter assortment of 3-20 nm (Fig.…”
Section: Tem Analysismentioning
confidence: 88%