Claims
- 1. A method for assembling nanoparticles in a controlled fashion comprising the steps of:
providing a plurality of nanoparticles; providing a plurality of ligands, each of the ligands comprising at least one linker arm; attaching at least one ligand to each of the plurality of nanoparticles; and reacting at least one pair of the linker arms to form an assembly of nanoparticles.
- 2. The method of claim 1, wherein the step of reacting is initiated by removing at least one protective group from a reactive functional group on at least one of the nanoparticles.
- 3. The method of claim 1, further comprising the step of performing additional linker arm reactions in a step-wise manner until a nanoparticle assembly of desired size and structure is obtained.
- 4. A nanoparticle assembly synthesized by the method of claim 3.
- 5. A method for connecting nanoparticles comprising the steps of:
providing a first nanoparticle having attached thereto at least one functional group of a first kind, wherein functional groups of the first kind do not react with one another; providing a second nanoparticle having attached thereto at least one functional group of a second kind, wherein functional groups of the second kind do not react with one another; and reacting at least one functional group of the first kind with at least one functional group of the second kind directly or through a linker component to cause connection between the first and second nanoparticles.
- 6. The method of claim 5, wherein the step of reacting is initiated by removing at least one protective group from a reactive functional group on at least one of the first or second nanoparticles.
- 7. The method of claim 5, further comprising the step of performing additional functional group reactions in a step-wise manner until a structure of connected nanoparticles of a desired size and configuration is obtained.
- 8. A nanoparticle-based structure synthesized according to the method of claim 7.
- 9. A method for connecting nanoparticles comprising the steps of:
providing a plurality of nanoparticles, each nanoparticle having attached thereto two or more functional groups, wherein the functional groups attached to any one nanoparticle do not react with one another; providing at least one linker component having functional groups attached thereto that are reactive to the functional groups attached to the nanoparticles; and contacting the nanoparticles and the linker component to cause connection between at least one pair of nanoparticles.
- 10. The method of claim 9, wherein the step of contacting comprises the step of removing at least one protective group from a reactive functional group on at least one of the nanoparticles.
- 11. The method of claim 9, further comprising the step of making additional contacts between nanoparticles and linker components in a step-wise manner until a structure of connected nanoparticles of a desired size and configuration is obtained.
- 12. A nanoparticle-based structure synthesized according to the method of claim 11.
- 13. A method for synthesizing nanoparticle linker ligand building blocks useful in making nanoparticle assemblies comprising the steps of:
providing a plurality of nanoparticle precursors; providing a plurality of ligand precursors; providing a plurality of linker moiety precursors; and reacting the nanoparticle precursors, the ligand precursors, and the linker moiety precursors, thereby forming nanoparticles with attached linker ligands.
- 14. The method of claim 13, wherein the step of reacting comprise the step of removing at least one protective group from a reactive functional group on at least one of the nanoparticles.
- 15. The method of claim 13, further comprising the step of performing additional reactions in a step-wise manner until a nanoparticle linker ligand building block of a desired size and configuration is obtained.
- 16. A nanoparticle linker ligand building block synthesized according to the method of claim 15.
- 17. A method for synthesizing a chain of nanoparticles comprising the steps of:
providing a plurality of nanoparticles having a plurality of linker ligands, each of the linker ligands comprising a reactive chemical moiety; and linking at least two of the nanoparticles by causing at least one reaction between at least one reactive moiety associated with each nanoparticle.
- 18. The method of claim 17, wherein the step of linking comprises the step of removing at least one protective group from a reactive functional group on at least one of the nanoparticles.
- 19. The method of claim 17, further comprising the step of linking additional nanoparticles in a step-wise manner until a structure of nanoparticle chain of a desired size and configuration is obtained.
- 20. A nanoparticle chain synthesized by the method of claim 19.
- 21. A method for monofunctionalization of nanoparticles comprising the steps of:
providing a mixture of mono- to multifunctionalized nanoparticles; treating the mixture with a slight excess of bridging linker molecules to make dimer, trimer and tetramer species of nanoparticles; separating out dimer species formed by two monofunctionalized nanoparticles; and subjecting dimer species to a linkage breaking reaction in order to release mono functionalized nanoparticles.
- 22. A monofunctionalized nanoparticle synthesized according to the method of claim 21.
- 23. A method for controlled monofunctionalization of nanoparticles comprising the steps of:
providing at least one nanoparticle having a ligand shell; providing at least one polymerizing ligand having a desired monofunctionality; and initiating a polymerization reaction to cause capture of the nanoparticle ligand shell by the polymerizing ligand, thereby preventing further exchange processes from occurring.
- 24. A monofunctionalized nanoparticle synthesized according to the method of claim 23.
RELATED APPLICATIONS
[0001] This application claims priority to U.S. Provisional Application Ser. No. 60/396,337, filed Jul. 17, 2002.
Provisional Applications (1)
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Number |
Date |
Country |
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60396337 |
Jul 2002 |
US |