Methods for producing nanoparticles and using same
A method for producing nanocomposite particles is provided. The method comprises supplying an organic phase fluid an organic phase fluid, an aqueous phase fluid, an amphiphile, and a plurality of hydrophobic nanospecies to a nozzle. An electric field is generated proximate the nozzle such that the fluid exiting the nozzle forms a cone jet that disperses into a plurality of droplets. The plurality of droplets are collected, and nanocomposite particles comprising a self-assembled structure encapsulating at least one hydrophobic nanospecies form by self-assembly.
1. A nanocomposite particle comprising:
a micelle comprising an amphiphile and a hydrophobic core and a surfactant, where the surfactant is poly(vinyl alcohol);
at least one first hydrophobic quantum dot encapsulated in the hydrophobic core of the micelle, the first quantum dot having a first emission wavelength;
at least one second hydrophobic quantum dot encapsulated in the hydrophobic core of the micelle, the second quantum dot having a second emission wavelength that is different from the first emission wavelength; and
the nanocomposite particle having a diameter in a range of about 5 nm to about 1000 nm.
2. The nanocomposite particle according to claim 1 further comprising at least one additional hydrophobic nanoparticle encapsulated in the hydrophobic core of the micelle, the additional nanoparticle selected from the group consisting of metallic nanoparticles, magnetic nanoparticles, carbonaceous nanoparticles, and combinations thereof.
3. The nanocomposite particle according to claim 2 , wherein the first emission wavelength is between about 490 nm to about 560 nm and the second emission wavelength is between about 590 nm to about 700 nm.