Method and apparatus for manufacturing isotropic magnetic nanocolloids by pulsed laser ablation
Disclosed herein are systems, methods, and apparatuses for manufacturing highly isotropic magnetic nanoparticles. In particular, manufacturing of spherical and amorphous particles suspended in a solvent by irradiating alloy targets submerged in a solvent using nanosecond-scale laser pulses is disclosed. The absence of shape and crystalline anisotropy in the particles yields a colloidal suspension with excellent soft magnetic properties which can be used to improve the performance of various medical diagnostic devices and consumer electronics.
1. Magnetic particles comprising:
isotropic particles having the general formula
X 1-a Y a , where
X is one of Co, Fe or a combination of Co and Fe,
Y is at least one of Zr, Ti, Sc, Ta, Hf, Y, La, Si, B, Nd, either individually or in combination,
a has a value between 0.4 and 0.02, and
the isotropic particles have an average particle size between 15 and 45 nm, an aspect ratio of less than 5:1, and an amorphous atomic structure.
2. The magnetic particles of claim 1 wherein the isotropic particles further include a component Z and have the structure
X 1-a Y a Z b , wherein
Y is one or more of the following: Zr, Ti, Sc, Ta, Hf, Y, Nd, Si, B,
Z is at least one of the Group 11 elements Au, Ag, Cu, and
b has a value between 0.05 and 0.001.
3. A colloidal suspension comprising:
a solvent; and
the magnetic particles of claim 1 .
4. The composition of claim 3 , wherein the isotropic particles are coated with an inert material including at least one of SiO 2 , Au, C.
5. The composition of claim 4 , wherein the isotropic particles further comprise:
a biocomponent, the biocomponent being one or more of protein or nucleic acid, the biocomponent attached to the inert material to create a targeted magnetic particle.
6. The composition of claim 5 , wherein the protein is bound to a surface of an isotropic particle and is Anti-CEA or Anti-TIMP1.
7. A particulate material comprising:
nanocomposite magnetic particles having the general formula
X 1-a-b Y a Z b , where
X is Co, Fe, Ni, or a combination of one or more of Co, Fe, or Ni,
Y is one of Zr, Ti, Sc, Ta, Hf, Y, La, Nd, Si, B, or a combination of one or more of Zr, Ti, Sc, Ta, Hf, Y, La, Nd, Si, or B,
Z is one of Au, Ag, Cu, or a combination of one or more of Au, Ag or Cu,
a has a value between 0.4 and 0.02,
b has a value between 0.05 and 0.001,
the nanocomposite magnetic particles have an average particle size between 15 and 45 nm and an aspect ratio of less than 5:1, and
the atomic structure of the composition is one of an amorphous structure, a structure of crystallites between 1 and 5 nm, or a combination of the amorphous structure and the structure of crystallites between 1 and 5 nm.
8. A colloidal suspension comprising:
a solvent; and
the magnetic particles of claim 7 .
9. The composition of claim 8 , wherein the nanocomposite magnetic particles are coated with an inert material including at least one of SiO 2 , Au, C.
10. The composition of claim 9 , wherein the nanocomposite magnetic particles further comprise a protein or nucleic acid attached to the inert material to create a targeted magnetic particle.
11. The composition of claim 10 , wherein the protein is Anti-CEA or Anti-TIMP1.