Patents by Inventor Jeffrey D. Colvin

Jeffrey D. Colvin has filed for patents to protect the following inventions. This listing includes patent applications that are pending as well as patents that have already been granted by the United States Patent and Trademark Office (USPTO).

  • Patent number: 10399053
    Abstract: Described here is a metal-carbon composite, comprising (a) a porous three-dimensional scaffold comprising one or more of carbon nanotubes, graphene and graphene oxide, and (b) metal nanoparticles disposed on said porous scaffold, wherein the metal-carbon composite has a density of 1 g/cm3 or less, and wherein the metal nanoparticles account for 1 wt. % or more of the metal-carbon composite. Also described are methods for making the metal-carbon composite.
    Type: Grant
    Filed: May 11, 2017
    Date of Patent: September 3, 2019
    Assignee: Lawrence Livermore National Security, LLC
    Inventors: Marcus A. Worsley, Joe H. Satcher, Jr., Sergei Kucheyev, Supakit Charnvanichborikarn, Jeffrey D. Colvin, Thomas E. Felter, Sangil Kim, Matthew Merrill, Christine A. Orme
  • Patent number: 10391466
    Abstract: A method of making a nanoporous aerogel includes the steps of providing nanowire suspensions, freeze casting the nanowire suspensions to produce freeze-cast gels, extracting the frozen medium from the freeze-cast gels by freeze-substitution with a solvent to produce wet gels, modifying or functionalizing the wet gels as needed, and drying the wet gels to produce a nanoporous aerogel.
    Type: Grant
    Filed: June 2, 2017
    Date of Patent: August 27, 2019
    Assignee: Lawrence Livermore National Security, LLC
    Inventors: Tyler M. Fears, Jeffrey D. Colvin, Sergei O. Kucheyev
  • Publication number: 20190085478
    Abstract: Ultralow density ionic material foams, with density approaching 0.1% of the bulk density, and synthesis methods using interconnected metallic nanowires are provided. Nanowires of various sizes and metals are dispersed into a freezable liquid through a suitable fluid exchange. Surface treatments ensure that nanowires remain sufficiently metallic and physically separated. Wire-liquid solutions can be dropped directly into liquid nitrogen in the form of droplets or placed into molds of various shapes. A freeze drying technique is employed to turn the resulting ice-wire mixture into a freestanding, low-density foam composed of interlocked nanowires. Sintering or oxidation and reduction treatment of the foam material at elevated temperatures is used to connect the nanowires into an interconnected metallic foam. Metals of the metal foams are then processed into ionic materials including oxides, nitrides, chlorides, hydrides, fluorides, iodides and carbides.
    Type: Application
    Filed: June 6, 2018
    Publication date: March 21, 2019
    Applicants: THE REGENTS OF THE UNIVERSITY OF CALIFORNIA, LAWERENCE LIVERMORE NATIONAL SECURITY, LLC, NATIONAL TECHNOLOGY & ENGINEERING SOLUTIONS OF SANDIA, LLC
    Inventors: Edward C. Burks, Dustin A. Gilbert, Kai Liu, Sergei O. Kucheyev, Thomas E. Felter, Jeffrey D. Colvin
  • Publication number: 20180345240
    Abstract: A method of making a nanoporous aerogel includes the steps of providing nanowire suspensions, freeze casting the nanowire suspensions to produce freeze-cast gels, extracting the frozen medium from the freeze-cast gels by freeze-substitution with a solvent to produce wet gels, modifying or functionalizing the wet gels as needed, and drying the wet gels to produce a nanoporous aerogel.
    Type: Application
    Filed: June 2, 2017
    Publication date: December 6, 2018
    Inventors: Tyler M. Fears, Jeffrey D. Colvin, Sergei O. Kucheyev
  • Publication number: 20180311737
    Abstract: Ultralow density pure metal foams, with density approaching 0.1% of the bulk density, and synthesis methods using interconnected metallic nanowires are provided. Nanowires of various sizes and metals are synthesized by electrodeposition into nanoporous templates such as anodized aluminum oxide or polycarbonate. The templates are etched away and the nanowires are dispersed into water through a suitable fluid exchange. Surface treatments ensure that nanowires remain sufficiently metallic and physically separated. Wire-water solutions can be dropped directly into liquid nitrogen in the form of droplets or placed into molds of various shapes. A freeze drying technique is employed to turn the resulting ice-wire mixture into a freestanding, low-density foam composed of interlocked nanowires. Finally, sintering or oxidation and reduction treatment of the foam material at elevated temperatures is used to connect the nanowires into an interconnected metallic foam, greatly improving the strength of the structure.
    Type: Application
    Filed: April 19, 2018
    Publication date: November 1, 2018
    Applicants: THE REGENTS OF THE UNIVERSITY OF CALIFORNIA, LAWERENCE LIVERMORE NATIONAL SECURITY, LLC, NATIONAL TECHNOLOGY & ENGINEERING SOLUTIONS OF SANDIA, LLC
    Inventors: Edward C. Burks, Dustin A. Gilbert, Kai Liu, Sergei O. Kucheyev, Thomas E. Felter, Jeffrey D. Colvin
  • Patent number: 10086431
    Abstract: Disclosed here is a method for making a nanoporous material, comprising aerosolizing a solution comprising at least one metal salt and at least one solvent to obtain an aerosol, freezing the aerosol to obtain a frozen aerosol, and drying the frozen aerosol to obtain a nanoporous metal compound material. Further, the nanoporous metal compound material can be reduced to obtain a nanoporous metal material.
    Type: Grant
    Filed: June 16, 2015
    Date of Patent: October 2, 2018
    Assignees: Lawrence Livermoe National Security, LLC, National Technology & Engineering Solutions of Sandia, LLC
    Inventors: Michael Bagge-Hansen, Patrick G. Campbell, Jeffrey D. Colvin, Sergei Kucheyev, Thomas E. Felter
  • Publication number: 20170312725
    Abstract: Described here is a metal-carbon composite, comprising (a) a porous three-dimensional scaffold comprising one or more of carbon nanotubes, graphene and graphene oxide, and (b) metal nanoparticles disposed on said porous scaffold, wherein the metal-carbon composite has a density of 1 g/cm3 or less, and wherein the metal nanoparticles account for 1 wt. % or more of the metal-carbon composite. Also described are methods for making the metal-carbon composite.
    Type: Application
    Filed: May 11, 2017
    Publication date: November 2, 2017
    Applicant: LAWRENCE LIVERMORE NATIONAL SECURITY, LLC
    Inventors: Marcus A. Worsley, Joe H. Satcher, JR., Sergei Kucheyev, Supakit Charnvanichborikarn, Jeffrey D. Colvin, Thomas E. Felter, Sangil Kim, Matthew Merrill, Christine A. Orme
  • Publication number: 20160368047
    Abstract: Disclosed here is a method for making a nanoporous material, comprising aerosolizing a solution comprising at least one metal salt and at least one solvent to obtain an aerosol, freezing the aerosol to obtain a frozen aerosol, and drying the frozen aerosol to obtain a nanoporous metal compound material. Further, the nanoporous metal compound material can be reduced to obtain a nanoporous metal material.
    Type: Application
    Filed: June 16, 2015
    Publication date: December 22, 2016
    Inventors: Michael Bagge-Hansen, Patrick G. Campbell, Jeffrey D. Colvin, Sergei Kucheyev, Thomas E. Felter