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HRTEM characterization showed that gold nanoparticles with an average size between 2 and 7 nm were obtained in all catalysts making them suitable for CO oxidation.
Polymer particles with average size between 140 nm and 220 nm and narrow size distribution were used as templates for deposition of AgNPs by microwave-assisted reduction of silver precursors in aqueous medium.
The face-centered cubic Co and Ni, and body-centered cubic Fe core nanoparticles showed good crystalline structures with an average size between 20 and 30 nm were encapsulated in onion-like carbon coatings with a thickness of 2 10 nm.
From Fig. 9, it can be observed that particles with average size between 10 and 37 nm have less characteristic strain.
American National Standards Institute (ANSI) has defined nanoparticles, those particles which have an average size between 1 up to 100 nm (Rauscher and Roebben 2010).
The medicinal use of colloidal gold (Swarnabhasma) and mercury remain popular till this day and the Swarnabhasmas (gold ash) has been characterized as globular particles of gold with the average size between 56 and 57 nm.
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In those conditions, more stable systems with reduced hydrophobic surface and average sizes between 30 and 100 nm were generated.
DNA polymer polyplexes had average sizes between 100 and 250 nm and zeta-potentials between 10 and 25 mV, and a strong dependence of composition on the size on the zeta-potential was observed.
In this context, the present research focuses on the application of NIRS, under laboratory conditions, to chunks (artificially isolated particles or aggregates) of soil of average sizes between 0.04 and 8 mm, obtained in 5 different soils with contrasting features, and repacked in Petri dishes.
Large MoS2 crystalline islands with average sizes between 20 and 100 mm were obtained by using ultraclean substrates and fresh precursors.
Besides, quantum confinement effects on the Raman peaks of crystalline Si-np, which were observed by HRTEM, were evidenced for Si-np average sizes between 3 and 6 nm.
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