Compositions of nanoparticles with radial gradients and methods of use thereof
A nanoparticle with tunable radial gradients of compositions extending from the center of the nanoparticles. The nature of the gradient preserves the metallic state of the nanoparticles, the diffusion of the constituents, and the oxidation of the interface. The gradients can be purposely varied to allow for specific applications in fields ranging from corrosion, magnetics, information technology, imaging, electromagnetic absorption, coating technologies, and immuno-precipitation. The nanoparticles can be easily used to advance many areas of industry, technology, and life sciences.
1. A nanoparticle, comprising:
a metallic center formed from at least a first metal comprising iron;
an interface formed from at least a second metal, wherein the second metal is selected from the group consisting of nickel, chromium, cobalt, molybdenum, tungsten, vanadium, aluminum, and titanium, and combinations thereof; and
a gradient between the metallic center and the interface that transitions from a first concentration of the second metal to a second, higher concentration of the second metal radially outward from the metallic center.
2. The nanoparticle of claim 1 , further comprising a void within the gradient.
3. The nanoparticle of claim 2 , wherein the nanoparticle is magnetic.
4. The nanoparticle of claim 2 , wherein the nanoparticle is conductive.
5. The nanoparticle of claim 2 , wherein the nanoparticle is at least partially oxidized.
6. The nanoparticle of claim 5 , wherein the nanoparticle has been modified with one or more inorganic or organic compounds.
7. A device comprising a plurality of nanoparticles, wherein each nanoparticle comprises a metallic center formed from at least a first metal comprising iron an interface formed from at least a second metal selected from the group consisting of nickel, chromium, cobalt, molybdenum, tungsten, vanadium, aluminum, and titanium, and combinations thereof, and a gradient between the metallic center and the interface that transitions from a first concentration of the second metal to a second, higher concentration of the second metal, wherein the plurality of nanoparticles are applied as a coating to a substrate and the coating protects the substrate from corrosion.
8. The device of claim 7 , wherein the coating is magnetic, conductive, catalytic, or combinations thereof.
9. The device of claim 7 , wherein the plurality of nanoparticles are embedded in a polymer or composite.
10. A device comprising a plurality of nanoparticles, wherein each nanoparticle comprises a metallic center formed from at least a first metal comprising iron, an interface formed from at least a second metal selected from the group consisting of nickel, chromium, cobalt, molybdenum, tungsten, vanadium, aluminum, and titanium, and combinations thereof, and a gradient between the metallic center and the interface that transitions from a first concentration of the second metal to a second, higher concentration of the second metal, wherein the nanoparticles function as magnetic bead supports.