2020
DOI: 10.1016/j.bcab.2020.101683
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Rapid mycosynthesis and characterization of phenols-capped crystal gold nanoparticles from Ganoderma applanatum, Ganodermataceae

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Cited by 20 publications
(7 citation statements)
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“…Diffraction rings obtained for the encapsulated crystalline structures are consistent with the Au (111) surface. [38][39][40] EDS analysis of composition of these materials do show some contributions from elemental Au, as expected. A representative EDS analysis for baci@AuNP is shown in Fig.…”
Section: Characterization Of Atb@aunpsupporting
confidence: 81%
“…Diffraction rings obtained for the encapsulated crystalline structures are consistent with the Au (111) surface. [38][39][40] EDS analysis of composition of these materials do show some contributions from elemental Au, as expected. A representative EDS analysis for baci@AuNP is shown in Fig.…”
Section: Characterization Of Atb@aunpsupporting
confidence: 81%
“…Using phenolic compounds extracted from G. applanatum , an AuNP-based decolorization technique for methylene blue dye was developed recently, and the findings were reported in Nano Letters. An average of 18.7 nm-sized face-centered cubics AuNPs, capable of decolorizing methylene blue in 35 s, were spotted by our researchers using phenol-capped AuNPs ( Abdul-Hadi et al, 2020 ). Another study found that A. bisporus -derived AuNPs with a size range of 10–50 nm had remarkable antifungal activity against the pathogenic fungus A. flavus ( Eskandari-Nojedehi et al, 2018 ).…”
Section: Green Synthesis Of Nanoparticlesmentioning
confidence: 99%
“…Face-centered cubic nanocrystals with dye-reducing properties were synthesized using phenolic compounds isolated from Ganoderma applanatum [ 141 ]. Anticancer AuNPs biofabricated using a G. lucidum fruit body extract exhibited shapes such as spherical, oval and irregular, and their size ranged between 1 and 100 nm [ 142 ].…”
Section: Fungi-mediated Synthesis Of Nanoparticlesmentioning
confidence: 99%
“…The same culture can produce several enzymes catalyzing nanoparticle fabrication; for example, for P. chrysosporium , laccase and ligninase have been shown to be responsible for the extracellular and intracellular AuNP formation, respectively [ 231 ]. In addition to enzymatic myconanosynthesis, fungal peptides [ 236 ], polysaccharides [ 68 , 88 , 236 ] and phenolic compounds were found to participate in the reduction of various compounds and nanoparticle formation [ 86 , 141 , 237 ]. Thus, many researchers confirm that biological molecules such as polysaccharides, enzymes, proteins or peptides can be used for the synthesis and assembly of materials with nanoscale dimensions.…”
Section: Mechanisms Of Fungi-mediated Nanoparticle Biosynthesismentioning
confidence: 99%