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The samples were prepared by evaporation of a drop of sample solution on a grid at room temperature.
To prepare sample of TEM, a drop of sample 4 solution was placed on a holey-carbon coated Cu TEM grid (200 mesh).
One drop of sample suspension was placed on a carbon-coated grid (Ted Pella, USA) and dried at room temperature overnight before analysis under TEM.
The plots show Kendall's τ coefficients for different sampling strategies along with the drop of sample size using Paris users data set.
A drop of sample solution was allowed to dry on copper grid overnight (Sau et al. 2001; Zubarev et al. 2006).
To measure the morphology and size distribution of nanoparticles, a drop of sample solution was placed onto a 300-mesh copper grid coated with carbon.
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For this purpose, a drop of samples diluted in DMF was deposited onto a Cu TEM grid, followed by solvent evaporation at room temperature.
Field emission scanning electron microscopy (FESEM, QUANTA FEG 250) was used to investigate the surface morphology of the samples and samples were performed by applying a diluted drop of samples on a silicon wafer.
The specimens for the measurements were prepared by applying a few drops of sample solution onto a holey carbon-coated copper grid, and then evaporating the solvent.
TEM specimens were prepared by placing a few drops of sample solution on a carbon grid.
The TEM specimens were prepared by placing a few drops of sample solution on a copper mesh covered with a carbon film and allowing the solvent to evaporate at room temperature for overnight.
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