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Silver nanoplate.
Open image in new window Figure 1 Strand-breaking effect of silver nanoplate on Escherichia coli plasmid DNA.
These nanoplates have the same structure as gold triangular nanoplates synthesized with the assistance of surfactants as capping agents [13, 14], gold nanoplates prepared from lemongrass extract [30], and the silver nanoplate structures [31].
In the later research, bare silver nanoplate (Ag-nPl) were spin-coated on indium tin oxide and silica capsulated Ag-NPs were incorporated to a PBDTTT-C-T PC71BM active layer by Shen et al. [115].
The following chemicals were used in this work: citrate-stabilized triangular silver nanoplate (TSNP) colloidal solution (AgWS5, 0.02 mg/g, Dai Nippon Toryo Co. Ltd ., poly(diallyldimethylammonium chloride) (PDDA, 20%, MW 400,000 500,000, Aldrich), and polystyrene sulfonate (PSS, MW 500,000, Scientific Polymer Products, Inc .. Deionized water (18.2 MΩ cm) was used throughout all experiments.
There are three LSPR bands centered at 331 (weak), 507 (medium), and 710 nm (strong) in the extinction spectrum, assigned to the out-of-plane quadrupole, in-plane quadrupole and in-plane dipole plasmon resonance modes of triangular silver nanoplate, respectively [38, 39].
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c E. coli treated with triangular silver nanoplates.
We used silver nanoplates because in a study shown by Sadeghi et al. [22], silver nanoplates are more biologically active than silver nanoparticles and silver nanorods [23, 24].
Triangular silver nanoplates (TSNP) are one such anisotropic silver nanostructure [10, 11, 12].
We used silver nanoplates [21] and silica nanoparticles for this study.
The selected area electron diffraction analysis reveals that the silver nanoplates are single crystals with an atomically flat surface.
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