Patents by Inventor Quanxi Jia

Quanxi Jia 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: 10945311
    Abstract: A braze-free substrate heating device including a heater block body, a heater block lid, and a heating element. The heating element sits inside the heater block body. The heater block lid is on the heating element, such that the heating element is sandwiched between the heater block lid and the floor of the heater block body. The heating element is held in place by compressing the heater block lid into the heater block body and attaching the heater block lid to the top of the heater block body so that the heating element is fully supported over its surface area, and can maintain uniform thermal contact with the heater block lid and heater block body over its entire surface area.
    Type: Grant
    Filed: November 1, 2017
    Date of Patent: March 9, 2021
    Assignee: Triad National Security, LLC
    Inventors: Paul Dowden, Quanxi Jia
  • Patent number: 10044061
    Abstract: A process for preparing a lithium-rich antiperovskite electrolyte film involves forming a composite target of precursor metal oxide(s) and metal halide(s), and exposing the target to a pulsed laser beam under conditions suitable for depositing a film of lithium-rich antiperovskite on a surface. In some embodiments the process is used to prepare a film of Li3OCl from a target largely composed of Li2O and LiCl. Exposure of the target to a pulsed laser beam deposits antiperovskite electrolyte Li3OCl on a substrate. In another embodiment, sputtering may be used to prepare films of lithium-rich antiperovskites using the composite target of precursor metal oxide(s) and metal halide(s).
    Type: Grant
    Filed: June 10, 2015
    Date of Patent: August 7, 2018
    Assignee: Los Alamos National Security, LLC
    Inventors: Xujie Lu, John Howard, Luc Daemen, Yusheng Zhao, Quanxi Jia
  • Patent number: 9353435
    Abstract: A process for stabilizing laser energy density on a target surface during pulsed laser deposition of thin films controls the focused laser spot on the target. The process involves imaging an image-aperture positioned in the beamline. This eliminates changes in the beam dimensions of the laser. A continuously variable attenuator located in between the output of the laser and the imaged image-aperture adjusts the energy to a desired level by running the laser in a “constant voltage” mode. The process provides reproducibility and controllability for deposition of electronic thin films by pulsed laser deposition.
    Type: Grant
    Filed: September 30, 2013
    Date of Patent: May 31, 2016
    Assignee: Los Alamos National Security, LLC
    Inventors: Paul C. Dowden, Quanxi Jia
  • Publication number: 20150364788
    Abstract: A process for preparing a lithium-rich antiperovskite electrolyte film involves forming a composite target of precursor metal oxide(s) and metal halide(s), and exposing the target to a pulsed laser beam under conditions suitable for depositing a film of lithium-rich antiperovskite on a surface. In some embodiments the process is used to prepare a film of Li3OCl from a target largely composed of Li2O and LiCl. Exposure of the target to a pulsed laser beam deposits antiperovskite electrolyte Li3OCl on a substrate. In another embodiment, sputtering may be used to prepare films of lithium-rich antiperovskites using the composite target of precursor metal oxide(s) and metal halide(s).
    Type: Application
    Filed: June 10, 2015
    Publication date: December 17, 2015
    Inventors: Xujie Lu, John Howard, Luc Daemen, Yusheng Zhao, Quanxi Jia
  • Patent number: 9029985
    Abstract: Films having a comb-like structure of nanocolumns of Sm2O3 embedded in a SrTiO3 formed spontaneously on a substrate surface by pulsed laser deposition. In an embodiment, the nanocolumns had a width of about 20 nm with spaces between nanocolumns of about 10 nm. The films exhibited memristive behavior, and were extremely uniform and tunable. Oxygen deficiencies were located at vertical interfaces between the nanocolumns and the matrix. The substrates may be single-layered or multilayered.
    Type: Grant
    Filed: May 20, 2014
    Date of Patent: May 12, 2015
    Assignee: Los Alamos National Security, LLC
    Inventors: Judith L. Driscoll, ShinBuhm Lee, Quanxi Jia
  • Publication number: 20150093519
    Abstract: A process for stabilizing laser energy density on a target surface during pulsed laser deposition of thin films controls the focused laser spot on the target. The process involves imaging an image-aperture positioned in the beamline. This eliminates changes in the beam dimensions of the laser. A continuously variable attenuator located in between the output of the laser and the imaged image-aperture adjusts the energy to a desired level by running the laser in a “constant voltage” mode. The process provides reproducibility and controllability for deposition of electronic thin films by pulsed laser deposition.
    Type: Application
    Filed: September 30, 2013
    Publication date: April 2, 2015
    Applicant: Los Alamos National Security, LLC
    Inventors: Paul C. DOWDEN, Quanxi JIA
  • Publication number: 20140346423
    Abstract: Films having a comb-like structure of nanocolumns of Sm2O3 embedded in a SrTiO3 formed spontaneously on a substrate surface by pulsed laser deposition. In an embodiment, the nanocolumns had a width of about 20 nm with spaces between nanocolumns of about 10 nm. The films exhibited memristive behavior, and were extremely uniform and tunable. Oxygen deficiencies were located at vertical interfaces between the nanocolumns and the matrix. The substrates may be single-layered or multilayered.
    Type: Application
    Filed: May 20, 2014
    Publication date: November 27, 2014
    Applicant: LOS ALAMOS NATIONAL SECURITY, LLC
    Inventors: Judith L. Driscoll, ShinBuhm Lee, Quanxi Jia
  • Patent number: 8633472
    Abstract: Terahertz radiation source and method of producing terahertz radiation, said source comprising a junction stack, said junction stack comprising a crystalline material comprising a plurality of self-synchronized intrinsic Josephson junctions; an electrically conductive material in contact with two opposing sides of said crystalline material; and a substrate layer disposed upon at least a portion of both the crystalline material and the electrically-conductive material, wherein the crystalline material has a c-axis which is parallel to the substrate layer, and wherein the source emits at least 1 mW of power.
    Type: Grant
    Filed: September 14, 2009
    Date of Patent: January 21, 2014
    Assignee: Los Alamos National Security, LLC
    Inventors: Lev Boulaevskii, David M. Feldmann, Quanxi Jia, Alexei Koshelev, Nathan A. Moody
  • Patent number: 8530554
    Abstract: A polymer assisted deposition process for deposition of metal oxide films is presented. The process includes solutions of one or more metal precursor and soluble polymers having binding properties for the one or more metal precursor. After a coating operation, the resultant coating is heated at high temperatures to yield metal oxide films. Such films can be epitaxial in structure and can be of optical quality. The process can be organic solvent-free.
    Type: Grant
    Filed: April 29, 2008
    Date of Patent: September 10, 2013
    Assignee: Los Alamos National Security, LLC
    Inventors: Thomas M. McCleskey, Anthony K. Burrell, Quanxi Jia, Yuan Lin
  • Publication number: 20130217840
    Abstract: A polymer assisted deposition process for deposition of metal oxide films is presented. The process includes solutions of one or more metal precursor and soluble polymers having binding properties for the one or more metal precursor. After a coating operation, the resultant coating is heated at high temperatures to yield metal oxide films. Such films can be epitaxial in structure and can be of optical quality. The process can be organic solvent-free.
    Type: Application
    Filed: April 29, 2008
    Publication date: August 22, 2013
    Inventors: Thomas M. McCleskey, Anthony K. Burrell, Quanxi Jia, Yuan Lin
  • Patent number: 8487028
    Abstract: Carbon nanotubes were prepared by coating a substrate with a coating solution including a suitable solvent, a soluble polymer, a metal precursor having a first metal selected from iron, nickel, cobalt, and molybdenum, and optionally a second metal selected from aluminum and magnesium, and also a binding agent that forms a complex with the first metal and a complex with the second metal. The coated substrate was exposed to a reducing atmosphere at elevated temperature, and then to a hydrocarbon in the reducing atmosphere. The result was decomposition of the polymer and formation of carbon nanotubes on the substrate. The carbon nanotubes were often in the form of an array on the substrate.
    Type: Grant
    Filed: August 20, 2012
    Date of Patent: July 16, 2013
    Assignee: Los Alamos National Security, LLC
    Inventors: Hongmei Luo, Qingwen Li, Eve Bauer, Anthony Keiran Burrell, Thomas Mark McCleskey, Quanxi Jia
  • Patent number: 8431253
    Abstract: A polymer-assisted deposition process for deposition of epitaxial cubic metal nitride films and the like is presented. The process includes solutions of one or more metal precursor and soluble polymers having binding properties for the one or more metal precursor. After a coating operation, the resultant coating is heated at high temperatures under a suitable atmosphere to yield metal nitride films and the like. Such films can be used as templates for the development of high quality cubic GaN based electronic devices.
    Type: Grant
    Filed: January 22, 2009
    Date of Patent: April 30, 2013
    Assignee: Los Alamos National Security, LLC
    Inventors: Anthony K. Burrell, Thomas Mark McCleskey, Quanxi Jia, Alexander H. Mueller, Hongmei Luo
  • Publication number: 20130089663
    Abstract: Carbon nanotubes were prepared by coating a substrate with a coating solution including a suitable solvent, a soluble polymer, a metal precursor having a first metal selected from iron, nickel, cobalt, and molybdenum, and optionally a second metal selected from aluminum and magnesium, and also a binding agent that forms a complex with the first metal and a complex with the second metal. The coated substrate was exposed to a reducing atmosphere at elevated temperature, and then to a hydrocarbon in the reducing atmosphere. The result was decomposition of the polymer and formation of carbon nanotubes on the substrate. The carbon nanotubes were often in the form of an array on the substrate.
    Type: Application
    Filed: August 20, 2012
    Publication date: April 11, 2013
    Applicant: LOS ALAMOS NATIONAL SECURITY, LLC
    Inventors: Hongmei Luo, Qingwen Li, Eve Bauer, Anthony Keiran Burrell, Thomas Mark McCleskey, Quanxi Jia
  • Patent number: 8354046
    Abstract: Highly ordered Ge films are prepared directly on single crystal Si substrates by applying an aqueous coating solution having Ge-bound polymer onto the substrate and then heating in a hydrogen-containing atmosphere. A coating solution was prepared by mixing water, a germanium compound, ethylenediaminetetraacetic acid, and polyethyleneimine to form a first aqueous solution and then subjecting the first aqueous solution to ultrafiltration.
    Type: Grant
    Filed: September 11, 2009
    Date of Patent: January 15, 2013
    Assignee: Los Alamos National Security, LLC
    Inventors: Quanxi Jia, Anthony K. Burrell, Eve Bauer, Filip Ronning, Thomas Mark McCleskey, Guifu Zou
  • Patent number: 8278380
    Abstract: Carbon nanotubes were prepared by coating a substrate with a coating solution including a suitable solvent, a soluble polymer, a metal precursor having a first metal selected from iron, nickel, cobalt, and molybdenum, and optionally a second metal selected from aluminum and magnesium, and also a binding agent that forms a complex with the first metal and a complex with the second metal. The coated substrate was exposed to a reducing atmosphere at elevated temperature, and then to a hydrocarbon in the reducing atmosphere. The result was decomposition of the polymer and formation of carbon nanotubes on the substrate. The carbon nanotubes were often in the form of an array on the substrate.
    Type: Grant
    Filed: December 23, 2009
    Date of Patent: October 2, 2012
    Assignee: Los Alamos National Security, LLC
    Inventors: Hongmei Luo, Qingwen Li, Eve Bauer, Anthony Keiran Burrell, Thomas Mark McCleskey, Quanxi Jia
  • Publication number: 20120225315
    Abstract: Light-emitting devices are prepared by coating a porous substrate using a polymer-assisted deposition process. Solutions of metal precursor and soluble polymers having binding properties for metal precursor were coated onto porous substrates. The coated substrates were heated at high temperatures under a suitable atmosphere. The result was a substrate with a conformal coating that did not substantially block the pores of the substrate.
    Type: Application
    Filed: April 17, 2012
    Publication date: September 6, 2012
    Applicant: LOS ALAMOS NATIONAL SECURITY, LLC
    Inventors: Anthony K. Burrell, Thomas M. McCleskey, Quanxi Jia, Eve Bauer, Alexander H. Mueller
  • Publication number: 20120177902
    Abstract: Multiferroic articles including highly resistive, strongly ferromagnetic strained thin films of BiFe0.5Mn0.5O3 (“BFMO”) on (001) strontium titanate and Nb-doped strontium titanate substrates were prepared. The films were tetragonal with high epitaxial quality and phase purity. The magnetic moment and coercivity values at room temperature were 90 emu/cc (H=3 kOe) and 274 Oe, respectively. The magnetic transition temperature was strongly enhanced up to approximately 600 K, which is approximately 500 K higher than for pure bulk BiMnO3.
    Type: Application
    Filed: September 1, 2011
    Publication date: July 12, 2012
    Inventors: Judith L. Driscoll, Quanxi Jia
  • Patent number: 8158247
    Abstract: Light-emitting devices are prepared by coating a porous substrate using a polymer-assisted deposition process. Solutions of metal precursor and soluble polymers having binding properties for metal precursor were coated onto porous substrates. The coated substrates were heated at high temperatures under a suitable atmosphere. The result was a substrate with a conformal coating that did not substantially block the pores of the substrate.
    Type: Grant
    Filed: January 30, 2009
    Date of Patent: April 17, 2012
    Assignee: Los Alamos National Security, LLC
    Inventors: Anthony K. Burrell, Thomas Mark McCleskey, Quanxi Jia, Eve Bauer, Alexander H. Mueller
  • Publication number: 20120064341
    Abstract: Composite structures of carbon nanotubes (CNTs) and metal carbides include a helical nanotube/carbide composite fiber, and a film. The composite fiber was prepared by pulling/twisting carbon nanotubes from an array of nanotubes to form an as-spun fiber and soaking it a metal precursor solution, and then heating it under a reducing atmosphere with a carbon source. The composite fiber had a higher tensile strength, a higher conductivity, and a higher tensile modulus than the as-spun fiber. A composite structure in the form of parallel ribbons of aligned carbon nanotubes embedded in a film of NbC showed an enhanced conductivity along the CNT axial direction, and improved superconducting properties. The enhanced upper critical field of NbC/CNT suggested that the inclusion of CNTs in the NbC matrix reduced the coherence length of the NbC. Nanomechanical testing also demonstrated the potential for enhanced fracture toughness of NbC/CNT composites.
    Type: Application
    Filed: September 22, 2011
    Publication date: March 15, 2012
    Applicant: LOS ALAMOS NATIONAL SECURITY, LLC
    Inventors: Guifu Zou, Yingying Zhang, Anthony Keiran Burrell, Thomas Mark McCleskey, Quanxi Jia
  • Publication number: 20120058323
    Abstract: A two-dimensional vertical heteroepitaxial strain controlled composite is grown. The strain-controlling phase can be benign in all other respects so that the functional properties of the parent phase are unchanged, improved/enhanced, and/or manipulated. The new composite is advantageous because there is no need for expensive specialized crystals and because there are no thickness limitations.
    Type: Application
    Filed: August 1, 2008
    Publication date: March 8, 2012
    Applicant: LOS ALAMOS NATIONAL SECURITY, LLC
    Inventors: Judith L. Driscoll, Quanxi Jia, Patrick Zerrer