Patents Represented by Attorney Elmer A. Klavetter
  • Patent number: 6270846
    Abstract: An evaporation-induced self-assembly method to prepare a surfactant-templated thin film by mixing a silica sol, a surfactant, and a hydrophobic polymer and then evaporating a portion of the solvent during coating onto a substrate and then heating to form a liquid-phase, thin film material with a porosity greater than approximately 50 percent. The high porosity thin films can have dielectric constants less than 2 to be suitable for applications requiring low-dielectric constants. An interstitial compound can be added to the mixture, with the interstitial compound either covalently bonded to the pores or physically entrapped within the porous structure. The selection of the interstitial compound provides a means for developing thin films for applications including membranes, sensors, low dielectric constant films, photonic materials and optical hosts.
    Type: Grant
    Filed: March 2, 2000
    Date of Patent: August 7, 2001
    Assignee: Sandia Corporation
    Inventors: C. Jeffrey Brinker, Yunfeng Lu, Hongyou Fan
  • Patent number: 6271335
    Abstract: A method of making a thermally-removable encapsulant by heating a mixture of at least one bis(maleimide) compound and at least one monomeric tris(furan) or tetrakis(furan) compound at temperatures from above room temperature to less than approximately 90° C. to form a gel and cooling the gel to form the thermally-removable encapsulant. The encapsulant can be easily removed within approximately an hour by heating to temperatures greater than approximately 90° C., preferably in a polar solvent. The encapsulant can be used in protecting electronic components that may require subsequent removal of the encapsulant for component repair, modification or quality control.
    Type: Grant
    Filed: January 18, 2000
    Date of Patent: August 7, 2001
    Assignee: Sandia Corporation
    Inventors: James H. Small, Douglas A. Loy, David R. Wheeler, James R. McElhanon, Randall S. Saunders
  • Patent number: 6264741
    Abstract: A method of making a nanocomposite self-assembly is provided where at least one hydrophilic compound, at least one hydrophobic compound, and at least one amphiphilic surfactant are mixed in an aqueous solvent with the solvent subsequently evaporated to form a self-assembled liquid crystalline mesophase material. Upon polymerization of the hydrophilic and hydrophobic compounds, a robust nanocomposite self-assembled material is formed. Importantly, in the reaction mixture, the amphiphilic surfactant has an initial concentration below the critical micelle concentration to allow formation of the liquid-phase micellar mesophase material. A variety of nanocomposite structures can be formed, depending upon the solvent evaporazation process, including layered mesophases, tubular mesophases, and a hierarchical composite coating composed of an isotropic worm-like micellar overlayer bonded to an oriented, nanolaminated underlayer.
    Type: Grant
    Filed: November 24, 1999
    Date of Patent: July 24, 2001
    Assignee: Sandia Corporation
    Inventors: C. Jeffrey Brinker, Alan Sellinger, Yunfeng Lu
  • Patent number: 6262420
    Abstract: An apparatus and method for detecting alpha particles in the presence of high activities of beta particles utilizing an alpha spectrometer. The apparatus of the present invention utilizes a magnetic field applied around the sample in an alpha spectrometer to deflect the beta particles from the sample prior to reaching the detector, thus permitting detection of low concentrations of alpha particles. In the method of the invention, the strength of magnetic field required to adequately deflect the beta particles and permit alpha particle detection is given by an algorithm that controls the field strength as a function of sample beta energy and the distance of the sample to the detector.
    Type: Grant
    Filed: April 16, 1999
    Date of Patent: July 17, 2001
    Assignee: Sandia Corporation
    Inventors: Amir H. Mohagheghi, Robert P. Reese
  • Patent number: 6258305
    Abstract: A method of net-shaping using aerogel materials is provided by first forming a sol, aging the sol to form a gel, with the gel having a fluid component and having been formed into a medium selected from the group consisting of a powder, bulk material, or granular aerobeads, derivatizing the surface of the gel to render the surface unreactive toward further condensation, removing a portion of the fluid component of the final shaped gel to form a partially dried medium, placing the medium into a cavity, wherein the volume of said medium is less that the volume of the cavity, and removing a portion of the fluid component of the medium. The removal, such as by heating at a temperature of approximately less than 50° C., applying a vacuum, or both, causes the volume of the medium to increase and to form a solid aerogel. The material can be easily removed by exposing the material to a solvent, thereby reducing the volume of the material.
    Type: Grant
    Filed: March 29, 2000
    Date of Patent: July 10, 2001
    Assignee: Sandia Corporation
    Inventors: C. Jeffrey Brinker, Carol S. Ashey, Scott T. Reed, Chunangad S. Sriram, Thomas M. Harris
  • Patent number: 6245200
    Abstract: A method of photo-oxidizing a hydrocarbon compound is provided by dispersing MoS2 nanoclusters in a solvent containing a hydrocarbon compound contaminant to form a stable solution mixture and irradiating the mixture to photo-oxide the hydrocarbon compound. Hydrocarbon compounds of interest include aromatic hydrocarbon and chlorinated hydrocarbons. MoS2 nanoclusters with an average diameter less than approximately 10 nanometers are shown to be effective in decomposing potentially toxic aromatic and chlorinated hydrocarbons, such as phenol, pentachlorophenol, chlorinated biphenols, and chloroform, into relatively non-toxic compounds. The irradiation can occur by exposing the MoS2 nanoclusters and hydrocarbon compound mixture with visible light. The MoS2 nanoclusters can be introduced to the toxic hydrocarbons as either a MoS2 solution or deposited on a support material.
    Type: Grant
    Filed: December 10, 1999
    Date of Patent: June 12, 2001
    Assignee: Sandia Corporation
    Inventor: Jess P. Wilcoxon
  • Patent number: 6235864
    Abstract: Cross-linked polymers formed by ring-opening polymerization of a precursor monomer of the general formula R[CH2CH(Si(CH3)2)2O]2, where R is a phenyl group or an alkyl group having at least two carbon atoms. A cross-linked polymer is synthesized by mixing the monomer with a co-monomer of the general formula CH2CHR2(SiMe2)2O in the presence of an anionic base to form a cross-linked polymer of recurring units of the general formula R(Me2SiOCH2CHSiMe2)2[CH2CHR2(SiMe2)2O]n, where R2 is hydrogen, phenyl, ethyl, propyl or butyl. If the precursor monomer is a liquid, the polymer can be directly synthesized in the presence of an anionic base to a cross-linked polymer containing recurring units of the general formula R(Me2SiOCH2CHSiMe2)2. The polymers have approximately less than 1% porosity and are thermally stable at temperatures up to approximately 500° C.
    Type: Grant
    Filed: May 12, 1999
    Date of Patent: May 22, 2001
    Assignee: Sandia Corporation
    Inventors: Douglas A. Loy, Kamyar Rahimian
  • Patent number: 6210752
    Abstract: A method for making strontium-containing metal-oxide ceramic thin films from a precursor liquid by mixing a strontium neo-pentoxide dissolved in an amine solvent and at least one metal alkoxide dissolved in a solvent, said at least one metal alkoxide selected from the group consisting of alkoxides of calcium, barium, bismuth, cadmium, lead, titanium, tantalum, hafnium, tungsten, niobium, zirconium, yttrium, lanthanum, antimony, chromium and thallium, depositing a thin film of the precursor liquid on a substrate, and heating the thin film in the presence of oxygen at between 550 and 700° C.
    Type: Grant
    Filed: March 24, 1999
    Date of Patent: April 3, 2001
    Assignee: Sandia Corporation
    Inventor: Timothy J. Boyle
  • Patent number: 6153317
    Abstract: The present invention comprises perovskite-phase thin films, of the general formula A.sub.x B.sub.y O.sub.3 on a substrate, wherein A is selected from beryllium, magnesium, calcium, strontium, and barium or a combination thereof; B is selected from niobium and tantalum or a combination thereof; and x and y are mole fractions between approximately 0.8 and 1.2. More particularly, A is strontium or barium or a combination thereof and B is niobium or tantalum or a combination thereof. Also provided is a method of making a perovskite-phase thin film, comprising combining at least one element-A-containing compound, wherein A is selected from beryllium, magnesium, calcium, strontium or barium, with at least one element-B-containing compound, wherein B niobium or tantalum, to form a solution; adding a solvent to said solution to form another solution; spin-coating the solution onto a substrate to form a thin film; and heating the film to form the perovskite-phase thin film.
    Type: Grant
    Filed: August 4, 1998
    Date of Patent: November 28, 2000
    Assignee: Sandia Corporation
    Inventors: Timothy J. Boyle, Mark A. Rodriguez
  • Patent number: 6110982
    Abstract: An epoxy foam comprising a plurality of resins, a plurality of curing agents, at least one blowing agent, at least one surfactant and optionally at least one filler and the process for making. Preferred is an epoxy foam comprising two resins of different reactivities, two curing agents, a blowing agent, a surfactant, and a filler. According to the present invention, an epoxy foam is prepared with tailorable reactivity, exotherm, and pore size by a process of admixing a plurality of resins with a plurality of curing agents, a surfactant and blowing agent, whereby a foamable mixture is formed and heating said foamable mixture at a temperature greater than the boiling temperature of the blowing agent whereby said mixture is foamed and cured.
    Type: Grant
    Filed: January 13, 1999
    Date of Patent: August 29, 2000
    Assignee: Sandia Corporation
    Inventors: Edward M. Russick, Peter B. Rand
  • Patent number: 6086957
    Abstract: A method of preparing metal oxide thin films by a solution method. A .beta.-metal .beta.-diketonate or carboxylate compound, where the metal is selected from groups 8, 9, 10, 11, and 12 of the Periodic Table, is solubilized in a strong Lewis base to form a homogeneous solution. This precursor solution forms within minutes and can be deposited on a substrate in a single layer or a multiple layers to form a metal oxide thin film. The substrate with the deposited thin film is heated to change the film from an amorphous phase to a ceramic metal oxide and cooled.
    Type: Grant
    Filed: May 28, 1999
    Date of Patent: July 11, 2000
    Assignee: Sandia Corporation
    Inventors: Timothy J. Boyle, David Ingersoll
  • Patent number: 6075220
    Abstract: An apparatus and method for determining the penetration of the weld pool created from pulsed laser welding and more particularly to an apparatus and method of utilizing an optical technique to monitor the weld vaporization plume velocity to determine the depth of penetration. A light source directs a beam through a vaporization plume above a weld pool, wherein the plume changes the intensity of the beam, allowing determination of the velocity of the plume. From the velocity of the plume, the depth of the weld is determined.
    Type: Grant
    Filed: February 12, 1998
    Date of Patent: June 13, 2000
    Assignee: Sandia Corporation
    Inventors: Marcelino Essien, David M. Keicher, M. Eric Schlienger, James L. Jellison
  • Patent number: 6071109
    Abstract: A method for producing aluminum-indium-antimony materials by metal-organic chemical vapor deposition (MOCVD). This invention provides a method of producing Al.sub.X In.sub.1-x Sb crystalline materials by MOCVD wherein an Al source material, an In source material and an Sb source material are supplied as a gas to a heated substrate in a chamber, said Al source material, In source material, and Sb source material decomposing at least partially below 525.degree. C. to produce Al.sub.x In.sub.1-x Sb crystalline materials wherein x is greater than 0.002 and less than one.
    Type: Grant
    Filed: February 24, 1999
    Date of Patent: June 6, 2000
    Assignee: Sandia Corporation
    Inventors: Robert M. Biefeld, Andrew A. Allerman, Kevin C. Baucom
  • Patent number: 6057377
    Abstract: A method is provided for molecularly imprinting the surface of a sol-gel material, by forming a solution comprised of a sol-gel material, a solvent, an imprinting molecule, and a functionalizing siloxane monomer of the form Si(OR).sub.3-n X.sub.n, wherein n is an integer between zero and three and X is a functional group capable of reacting with the imprinting molecule, evaporating the solvent, and removing the imprinting molecule to form the molecularly imprinted metal oxide sol-gel material. The use of metal oxide sol-gels allows the material porosity, pore size, density, surface area, hardness, electrostatic charge, polarity, optical density, and surface hydrophobicity to be tailored and be employed as sensors and in catalytic and separations operations.
    Type: Grant
    Filed: October 30, 1998
    Date of Patent: May 2, 2000
    Assignee: Sandia Corporation
    Inventors: Darryl Y. Sasaki, C. Jeffrey Brinker, Carol S. Ashley, Charles E. Daitch, Kenneth J. Shea, Daniel J. Rush
  • Patent number: 6048546
    Abstract: A method for preparing encapsulated lipid-bilayer materials in a silica matrix comprising preparing a silica sol, mixing a lipid-bilayer material in the silica sol and allowing the mixture to gel to form the encapsulated lipid-bilayer material. The mild processing conditions allow quantitative entrapment of pre-formed lipid-bilayer materials without modification to the material's spectral characteristics. The method allows for the immobilization of lipid membranes to surfaces. The encapsulated lipid-bilayer materials perform as sensitive optical sensors for the detection of analytes such as heavy metal ions and can be used as drug delivery systems and as separation devices.
    Type: Grant
    Filed: July 30, 1998
    Date of Patent: April 11, 2000
    Assignee: Sandia Corporation
    Inventors: Darryl Y. Sasaki, Douglas A. Loy, Stacey A. Yamanaka
  • Patent number: 5965469
    Abstract: The present invention provides a glass composition for hermetically sealing to high thermal expansion materials such as aluminum alloys, stainless steels, and copper alloys, which includes between about 10 and about 25 mole percent Na.sub.2 O, between about 10 and about 25 mole percent K.sub.2 O, between about 4 and about 15 mole percent Al.sub.2 O.sub.3, between about 35 and about 50 mole percent P.sub.2 O.sub.5, B.sub.2 O.sub.3 in a concentration not exceeding 10 mole percent, and MXO in a concentration not exceeding 12 mole percent, wherein MXO is a metal oxide selected from the group consisting of PbO, BaO, CaO and MgO or a mixture thereof. This composition is suitable to hermetically seal to components for use in RF-interconnection applications.
    Type: Grant
    Filed: March 20, 1998
    Date of Patent: October 12, 1999
    Assignee: Sandia Corporation
    Inventors: Riley D. Kilgo, Richard K. Brow, Larry Kovacic
  • Patent number: 5925228
    Abstract: Electrophoretically active sol-gel processes to fill, seal, and/or density porous, flawed, and/or cracked coatings on electrically conductive substrates. Such coatings may be dielectrics, ceramics, or semiconductors and, by the present invention, may have deposited onto and into them sol-gel ceramic precursor compounds which are subsequently converted to sol-gel ceramics to yield composite materials with various tailored properties.
    Type: Grant
    Filed: January 9, 1997
    Date of Patent: July 20, 1999
    Assignee: Sandia Corporation
    Inventors: Janda K. Panitz, Scott T. Reed, Carol S. Ashley, Richard A. Neiser, William C. Moffatt
  • Patent number: 5922106
    Abstract: An apparatus and process for the continuous, near real-time monitoring of low-level concentrations of organic compounds in a liquid, and, more particularly, a water stream. A small liquid volume of flow from a liquid process stream containing organic compounds is diverted by an automated process to a heated vaporization capillary where the liquid volume is vaporized to a gas that flows to an automated gas chromatograph separation column to chromatographically separate the organic compounds. Organic compounds are detected and the information transmitted to a control system for use in process control. Concentrations of organic compounds less than one part per million are detected in less than one minute.
    Type: Grant
    Filed: April 20, 1998
    Date of Patent: July 13, 1999
    Assignee: Sandia Corporation
    Inventors: Curtis D. Mowry, Dianna S. Blair, Philip J. Rodacy, Stephen D. Reber
  • Patent number: 5911858
    Abstract: A method for coating (flat or non-flat) optical substrates with high-reflectivity multi-layer coatings for use at Deep Ultra-Violet ("DUV") and Extreme Ultra-Violet ("EUV") wavelengths. The method results in a product with minimum feature sizes of less than 0.10-.mu.m for the shortest wavelength (13.4-nm). The present invention employs a computer-based modeling and deposition method to enable lateral and vertical thickness control by scanning the position of the substrate with respect to the sputter target during deposition. The thickness profile of the sputter targets is modeled before deposition and then an appropriate scanning algorithm is implemented to produce any desired, radially-symmetric thickness profile. The present invention offers the ability to predict and achieve a wide range of thickness profiles on flat or figured substrates, i.e., account for 1/R.sup.2 factor in a model, and the ability to predict and accommodate changes in deposition rate as a result of plasma geometry, i.e.
    Type: Grant
    Filed: February 18, 1997
    Date of Patent: June 15, 1999
    Assignee: Sandia Corporation
    Inventor: Judith Alison Ruffner
  • Patent number: 5908802
    Abstract: A process for producing powders of perovskite-type compounds which comprises mixing a metal alkoxide solution with a lead acetate solution to form a homogeneous, clear metal solution, adding an oxalic acid/n-propanol solution to this metal solution to form an easily filterable, free-flowing precursor powder and then calcining this powder. This process provides fine perovskite-phase powders with ferroelectric properties which are particularly useful in a variety of electronic applications.
    Type: Grant
    Filed: October 30, 1997
    Date of Patent: June 1, 1999
    Assignee: Sandia Corporation
    Inventors: James A. Voigt, Diana L. Sipola, Bruce A. Tuttle, Mark T. Anderson