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The Au metallic particles exhibit a dark contrast in the TEM image.
Fine Ti5Si3 particles exhibit a unique quasi-network distribution, remarkably hindering the coarsening of α2/γ lamellar colonies.
These new colloidal particles exhibit a site-specific engineering of their surface and are commonly named patchy particles.
The particles exhibit a faceted, cubo-octahedral shape, extended planar defects, and mono-atomic surface steps.
These particles exhibit a single-phase solid solution with face-centered cubic (fcc) structure.
In our study, subjected to anisotropy etching of the argon plasma, the PS particles exhibit a non-spherical shape even at short etching times.
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SiO2-(Ca, Zn TiO3 Pr3+ phosphors prepared with nanosized silica particles exhibit an intense red photoluminescence (PL) [3].
Moreover, the composite particles exhibit an excellent colloidal stability.
All primary particles exhibit an inner core and an outer shell.
The synthesized BT particles exhibit an average size of around 35 nm and a spherical morphology, with a pseudo-cubic or tetragonal symmetry.
Citrate-coated particles are shown to destabilize in all fetal-calf-serum based physiological conditions tested, whereas the polymer coated particles exhibit an outstanding dispersibility as well as a structure devoid of protein corona.
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