Quantum dots, rods, wires, sheets, and ribbons, and uses thereof
Described are Zn x Cd 1-x S y Se 1-y /ZnS z Se 1-z core/shell nanocrystals, CdTe/CdS/ZnS core/shell/shell nanocrystals, optionally doped Zn(S,Se,Te) nano- and quantum wires, and SnS quantum sheets or ribbons, methods for making the same, and their use in biomedical and photonic applications, such as sensors for analytes in cells and preparation of field effect transistors.
1. A nanowire of the formula Zn(S,Se,Te) having a diameter between about 1 nm and 10 nm, wherein the nanowire further comprises a monolayer formed over the surface of the nanowire, the monolayer comprising molecules of the formula, X—Y—Z, wherein X is a functional group capable of reacting with or coordinating with the surface of the nanowire; Y is a divalent linking group; and Z is a functional molecule.
2. The nanowire of claim 1 , wherein the nanowire is single-crystalline.
3. The nanowire of claim 1 having a length between about 5 nm and about 250 nm.
4. The nanowire of claim 1 that is doped with about 0.1 to 2.0 mol. % manganese.
5. The nanowire of claim 1 having an absorption maximum between about 400 nm and 700 nm.
6. The nanowire of claim 1 , wherein X is a thiol or carboxylic acid group.
7. The nanowire of claim 1 , wherein Z is one half of a specific binding pair.
8. The nanowire of claim 7 , wherein Z is a nucleic acid, avidin, streptavidin, biotin, a protein, an enzyme antagonist, agonist, partial agonist, or partial antagonist, or an antigen.
9. The nanowire of claim 1 of the formula ZnS.
10. The nanowire of claim 1 of the formula ZnSe.
11. The nanowire of claim 1 of the formula ZnTe.
12. The nanowire of claim 1 that is Mn-doped.
13. A dispersion comprising the nanowire of claim 1 and a solvent.
14. The dispersion of claim 13 , wherein the solvent comprises an alkane.
15. The nanowire of claim 1 , wherein the nanowire is doped with one or metal selected from the group consisting of Fe, Co, Ni, Mn, Au, Ag, and Cu.