EP0927331B1

Macroscopically manipulable nanoscale devices made from nanotube assemblies

Abstract

This record has no abstract on file.

EP0927331B1, drawing sheet 1
Sheet 1 of 18

Term

Term ended

Expired 8 August 2017, 9.1 years ago.

  1. Priority
  2. Filed
  3. Granted
  4. Expired
  5. Today

67 claims: 17 independent, 50 dependent

  1. 1
    An article of manufacture comprising a macroscopic mounting element capable of being manipulated or observed in a macroscale environment and a nanoscale single wall carbon nanotube assembly attached to the mounting element, whereby the article permits macroscale information to be provided to or obtained from a nanoscale environment.
  2. 4
    The article of any preceding claim wherein the nanotube assembly is attached to the mounting element at one end and the other end of the nanotube assembly freely projects from the mounting element.
  3. 14
    The article of any of claims 1 to 13 wherein the single-wall carbon nanotube has insulating properties.
  4. 15
    The article of any of claims 1 to 13 wherein the single-wall carbon nanotube has metallic properties.
  5. 17
    The article of any of claims 1 to 15 wherein the carbon nanotube is doped with non-carbon atoms in the fullerene lattice.
  6. 18
    The article of any preceding claim wherein the single-wall carbon nanotube contains an endohedrally located species.
  7. 21
    The article of any preceding claim wherein the single-wall carbon nanotube is derivitized with a chemical moiety.
  8. 26
    The article of any of claims 23 to 25, wherein the nanotube assembly comprises a body section and a tip section comprising from about 1 to about 10 individual nanotubes projecting beyond the body section.
  9. 27
    The article of any of claims 23 to 26 wherein the nanotube assembly has a length of from about 20 to 100 times its diameter.
  10. 53
    A method for making a macroscopically manipulable nanoscale device comprising:preparing a single-wall carbon nanotube assembly having at least one nanotube;and attaching the nanotube assembly to a surface of a mounting element, the attaching optionally being performed under observation using an optical microscope.
  11. 56
    The method of any of claims 53 to 55, wherein the step of preparing a nanotube assembly comprises:contacting the nanotube assembly with an adhesive member;and removing the adhesive member from the nanotube-containing material, whereby a plurality of nanotubes are oriented perpendicular to the surface of the nanotube-containing material.
  12. 57
    The method of any of claims 53 to 56 wherein the step of attaching the nanotube assembly to a surface of a mounting element comprises:translating the mounting element toward the nanotube assembly;contacting the mounting element and the nanotube assembly, a portion of the mounting element optionally being coated with an adhesive prior to contact with the nanotube assembly, the adhesive optionally being an acrylic adhesive;and translating the mounting element away from the nanotube assembly.
  13. 58
    The method of any of claims 53 to 57, wherein the nanotube assembly and the mounting element are attached by van der Waals forces.
  14. 59
    The method of any of claims 53 to 57, wherein the nanotube assembly and the mounting element are attached by adhesive bonding.
  15. 60
    The method of any of claims 53 to 59, which further comprises coating the nanotube assembly attached to the mounting element.
  16. 65
    A method for imaging an object at nanoscale resolution comprising scanning the surface of the object with a proximity probe microscopy apparatus having a probe tip that comprises a nanoscale single-wall carbon nanotube assembly.
  17. 66
    A method for manipulating or modifying nanoscale objects comprising bringing a probe tip comprising a nanoscale single-wall carbon nanotube assembly into contact with or proximity to the nanoscale objects and actuating an interaction between the probe tip and the nanoscale object.