Patents by Inventor Blake Simmons

Blake Simmons 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: 7985868
    Abstract: We describe the preparation and characterization of two zinc hybrid luminescent structures based on the flexible and emissive linker molecule, trans-(4-R,4?-R?) stilbene, where R and R? are mono- or poly-coordinating groups, which retain their luminescence within these solid materials. For example, reaction of trans-4,4?-stilbenedicarboxylic acid and zinc nitrate in the solvent dimethylformamide (DMF) yielded a dense 2-D network featuring zinc in both octahedral and tetrahedral coordination environments connected by trans-stilbene links. Similar reaction in diethylformamide (DEF) at higher temperatures resulted in a porous, 3-D framework structure consisting of two interpenetrating cubic lattices, each featuring basic to zinc carboxylate vertices joined by trans-stilbene, analogous to the isoreticular MOF (IRMOF) series. We demonstrate that the optical properties of both embodiments correlate directly with the local ligand environments observed in the crystal structures.
    Type: Grant
    Filed: May 4, 2007
    Date of Patent: July 26, 2011
    Assignee: Sandia Corporation
    Inventors: Christina A. Bauer, Mark D. Allendorf, F. Patrick Doty, Blake A. Simmons
  • Patent number: 7811439
    Abstract: Disclosed is a method for monitoring sources of public water supply for a variety of pathogens by using a combination of ultrafiltration techniques together dielectrophoretic separation techniques. Because water-borne pathogens, whether present due to “natural” contamination or intentional introduction, would likely be present in drinking water at low concentrations when samples are collected for monitoring or outbreak investigations, an approach is needed to quickly and efficiently concentrate and separate particles such as viruses, bacteria, and parasites in large volumes of water (e.g., 100 L or more) while simultaneously reducing the sample volume to levels sufficient for detecting low concentrations of microbes (e.g., <10 mL). The technique is also designed to screen the separated microbes based on specific conductivity and size.
    Type: Grant
    Filed: August 3, 2006
    Date of Patent: October 12, 2010
    Assignee: Sandia Corporation
    Inventors: Blake A. Simmons, Vincent R. Hill, Yolanda Fintschenko, Eric B. Cummings
  • Patent number: 7678256
    Abstract: Disclosed herein are microfluidic devices for assaying at least one analyte specie in a sample comprising at least one analyte concentration area in a microchannel having insulating structures on or in at least one wall of the microchannel which provide a nonuniform electric field in the presence of an electric field provided by off-chip electrodes; and a pair of passivated sensing electrodes for impedance detection in a detection area. Also disclosed are assay methods and methods of making.
    Type: Grant
    Filed: November 3, 2006
    Date of Patent: March 16, 2010
    Assignee: Sandia Corporation
    Inventors: Rafael V. Davalos, Blake A. Simmons, Robert W. Crocker, Eric B. Cummings
  • Patent number: 7666289
    Abstract: Disclosed herein are methods and devices for assaying and concentrating analytes in a fluid sample using dielectrophoresis. As disclosed, the methods and devices utilize substrates having a plurality of pores through which analytes can be selectively prevented from passing, or inhibited, on application of an appropriate electric field waveform. The pores of the substrate produce nonuniform electric field having local extrema located near the pores. These nonuniform fields drive dielectrophoresis, which produces the inhibition. Arrangements of electrodes and porous substrates support continuous, bulk, multi-dimensional, and staged selective concentration.
    Type: Grant
    Filed: September 2, 2008
    Date of Patent: February 23, 2010
    Assignee: Sandia Corporation
    Inventors: Blake A. Simmons, Eric B. Cummings, Gregory J. Fiechtner, Yolanda Fintschenko, Gregory J. McGraw, Allen Salmi
  • Patent number: 7622596
    Abstract: Two new surfactant molecules are reported which contain thermally labile Diels-Alder adducts connecting the polar and non-polar sections of each molecule. The two surfactants possess identical non-polar dodecyl tail segments but exhibit different polar headgroups. The surfactants become soluble in water when anionic salts are formed through the deprotonation of the surfactant headgroups by the addition of potassium hydroxide. When either surfactant is exposed to temperature above about 60° C., the retro Diels-Alder reaction occurs, yielding hydrophilic and hydrophobic fragments or the aqueous solutions of the surfactants subsequently exhibit loss of all surface-active behavior.
    Type: Grant
    Filed: March 29, 2006
    Date of Patent: November 24, 2009
    Assignee: Sandia Corporation
    Inventors: James R. McElhanon, Blake A. Simmons, Thomas Zifer, Gregory M. Jamison, Douglas A. Loy, Kamyar Rahimian, Timothy M. Long, David R. Wheeler, Chad L. Staiger
  • Patent number: 7608461
    Abstract: A method for producing metal nanoparticles that when associated with an analyte material will generate an amplified SERS spectrum when the analyte material is illuminated by a light source and a spectrum is recorded. The method for preparing the metal nanoparticles comprises the steps of (i) forming a water-in-oil microemulsion comprising a bulk oil phase, a dilute water phase, and one or more surfactants, wherein the water phase comprises a transition metal ion; (ii) adding an aqueous solution comprising a mild reducing agent to the water-in-oil microemulsion; (iii) stirring the water-in-oil microemulsion and aqueous solution to initiate a reduction reaction resulting in the formation of a fine precipitate dispersed in the water-in-oil microemulsion; and (iv) separating the precipitate from the water-in-oil microemulsion.
    Type: Grant
    Filed: September 16, 2005
    Date of Patent: October 27, 2009
    Assignee: Sandia Corporation
    Inventors: Blake A. Simmons, Albert Alec Talin
  • Patent number: 7595349
    Abstract: Two new surfactant molecules are reported which contain thermally labile Diels-Alder adducts connecting the polar and non-polar sections of each molecule. The two surfactants possess identical non-polar dodecyl tail segments but exhibit different polar headgroups. The surfactants become soluble in water when anionic salts are formed through the deprotonation of the surfactant headgroups by the addition of potassium hydroxide. When either surfactant is exposed to temperature above about 60° C., the retro Diels-Alder reaction occurs, yielding hydrophilic and hydrophobic fragments or the aqueous solutions of the surfactants subsequently exhibit loss of all surface-active behavior.
    Type: Grant
    Filed: January 26, 2006
    Date of Patent: September 29, 2009
    Assignee: Sandia Corporation
    Inventors: James R. McElhanon, Blake A. Simmons, Thomas Zifer, Gregory M. Jamison, Douglas A. Loy, Kamyar Rahimian, Timothy M. Long, David R. Wheeler, Chad L. Staiger
  • Patent number: 7560028
    Abstract: Disclosed is a method that achieves water desalination by utilizing and optimizing clathrate hydrate phenomena. Clathrate hydrates are crystalline compounds of gas and water that desalinate water by excluding salt molecules during crystallization. Contacting a hydrate forming gaseous species with water will spontaneously form hydrates at specific temperatures and pressures through the extraction of water molecules from the bulk phase followed by crystallite nucleation. Subsequent dissociation of pure hydrates yields fresh water and, if operated correctly, allows the hydrate-forming gas to be efficiently recycled into the process stream.
    Type: Grant
    Filed: July 18, 2006
    Date of Patent: July 14, 2009
    Assignee: Sandia Corporation
    Inventors: Blake A. Simmons, Robert W. Bradshaw, Daniel E. Dedrick, David W. Anderson
  • Patent number: 7556945
    Abstract: Disclosed is an apparatus and method for continuously converting sucrose to ?-D-glucose. The method comprises a three-stage enzymatic reactor in which an aqueous solution of sucrose is first converted into a solution of fructose and ?-D-glucose by passing it through a porous, packed column containing an inert media on which invertase is immobilized. This solution is then sent through a second packed column containing glucose isomerase and finally a third packed column containing mutarotase. Solution temperature and pH are adjusted to maximize glucose output.
    Type: Grant
    Filed: July 5, 2007
    Date of Patent: July 7, 2009
    Assignee: Sandia Corporation
    Inventors: Blake A. Simmons, Joanne V. Volponi, David Ingersoll, Andrew Walker
  • Publication number: 20090045064
    Abstract: Disclosed herein are methods and devices for assaying and concentrating analytes in a fluid sample using dielectrophoresis. As disclosed, the methods and devices utilize substrates having a plurality of pores through which analytes can be selectively prevented from passing, or inhibited, on application of an appropriate electric field waveform. The pores of the substrate produce nonuniform electric field having local extrema located near the pores. These nonuniform fields drive dielectrophoresis, which produces the inhibition. Arrangements of electrodes and porous substrates support continuous, bulk, multi-dimensional, and staged selective concentration.
    Type: Application
    Filed: September 2, 2008
    Publication date: February 19, 2009
    Inventors: Blake A. Simmons, Eric B. Cummings, Gregory J. Fiechtner, Yolanda Fintschenko, Gregory J. McGraw, Allen Salmi
  • Patent number: 7419574
    Abstract: Microfluidic devices according to embodiments of the present invention include an inlet port, an outlet port, and a channel or chamber having a non-uniform array of insulating features on one or more surfaces. Electrodes are provided for generation of a spatially non-uniform electric field across the array. A voltage source, which may be an A.C. and/or a D.C. voltage source may be coupled to the electrodes for the generation of the electric field.
    Type: Grant
    Filed: January 16, 2004
    Date of Patent: September 2, 2008
    Inventors: Eric B. Cummings, Yolanda Fintschenko, Blake Simmons
  • Patent number: 7390377
    Abstract: We demonstrate a new method for joining patterned thermoplastic parts into layered structures. The method takes advantage of case-II permeant diffusion to generate dimensionally controlled, activated bonding layers at the surfaces being joined. It is capable of producing bonds characterized by cohesive failure while preserving the fidelity of patterned features in the bonding surfaces. This approach is uniquely suited to production of microfluidic multilayer structures, as it allows the bond-forming interface between plastic parts to be precisely manipulated at micrometer length scales. The bond enhancing procedure is easily integrated in standard process flows and requires no specialized equipment.
    Type: Grant
    Filed: September 22, 2005
    Date of Patent: June 24, 2008
    Assignee: Sandia Corporation
    Inventors: Thomas I. Wallow, Marion C. Hunter, Karen Lee Krafcik, Alfredo M. Morales, Blake A. Simmons, Linda A. Domeier
  • Patent number: 7378533
    Abstract: The present invention describes surfactants of formula (I), wherein R, RN, and m are defined herein, processes for their preparation, and methods for their decomposition.
    Type: Grant
    Filed: March 22, 2006
    Date of Patent: May 27, 2008
    Assignee: Sandia Corporation
    Inventors: James R. McElhanon, Gregory M. Jamison, Timothy M. Long, Douglas A. Loy, Kamyar Rahimian, Blake A. Simmons, Chad L. Staiger, David R. Wheeler, Thomas Zifer
  • Publication number: 20080105565
    Abstract: Disclosed herein are microfluidic devices for assaying at least one analyte specie in a sample comprising at least one analyte concentration area in a microchannel having insulating structures on or in at least one wall of the microchannel which provide a nonuniform electric field in the presence of an electric field provided by off-chip electrodes; and a pair of passivated sensing electrodes for impedance detection in a detection area. Also disclosed are assay methods and methods of making.
    Type: Application
    Filed: November 3, 2006
    Publication date: May 8, 2008
    Inventors: Rafael V. Davalos, Blake A. Simmons, Robert W. Crocker, Eric B. Cummings
  • Patent number: 7358221
    Abstract: A class of surfactant molecules whose structure includes regularly spaced unsaturation in the tail group and thus, can be readily decomposed by ring-closing metathesis, and particularly by the action of a transition metal catalyst, to form small molecule products. These small molecules are designed to have increased volatility and/or enhanced solubility as compared to the original surfactant molecule and are thus easily removed by solvent extraction or vacuum extraction at low temperature. By producing easily removable decomposition products, the surfactant molecules become particularly desirable as template structures for preparing meso- and microstructural materials with tailored properties.
    Type: Grant
    Filed: June 26, 2006
    Date of Patent: April 15, 2008
    Assignee: Sandia Corporation
    Inventors: Gregory M. Jamison, David R. Wheeler, Douglas A. Loy, Blake A. Simmons, Timothy M. Long, James R. McElhanon, Kamyar Rahimian, Chad L. Staiger
  • Patent number: 7351380
    Abstract: Injection molding is used to form microfluidic devices with integrated functional components. One or more functional components are placed in a mold cavity which is then closed. Molten thermoplastic resin is injected into the mold and then cooled, thereby forming a solid substrate including the functional component(s). The solid substrate including the functional component(s) is then bonded to a second substrate which may include microchannels or other features.
    Type: Grant
    Filed: January 8, 2004
    Date of Patent: April 1, 2008
    Assignee: Sandia Corporation
    Inventors: Blake Simmons, Linda Domeier, Noble Woo, Timothy Shepodd, Ronald F. Renzi
  • Patent number: 7351837
    Abstract: The present invention describes surfactants of formula (I), wherein R, RN, and m are defined herein, processes for their preparation, and methods for their decomposition.
    Type: Grant
    Filed: March 22, 2006
    Date of Patent: April 1, 2008
    Assignee: Sandia Corporation
    Inventors: James R. McElhanon, Gregory M. Jamison, Timothy M. Long, Douglas A. Loy, Kamyar Rahimian, Blake A. Simmons, Chad L. Staiger, David R. Wheeler, Thomas Zifer
  • Patent number: 7264962
    Abstract: Disclosed is an apparatus and method for continuously converting sucrose to ?-D-glucose. The method comprises a three stage enzymatic reactor in which an aqueous solution of sucrose is first converted into a solution of fructose and ?-D-glucose by passing it through a porous, packed column containing an inert media on which invertase is immobilized. This solution is then sent through a second packed column containing glucose isomerase and finally a third packed column containing mutarotase. Solution temperature and pH are adjusted to maximize glucose output.
    Type: Grant
    Filed: March 14, 2005
    Date of Patent: September 4, 2007
    Assignee: Sandia Corporation
    Inventors: Blake A. Simmons, Joanne V. Volponi, David Ingersoll, Andrew Walker
  • Patent number: 7253008
    Abstract: Disclosed herein are substrates comprising reactive ion etched surfaces and specific binding agents immobilized thereon. The substrates may be used in methods and devices for assaying or isolating analytes in a sample. Also disclosed are methods of making the reactive ion etched surfaces.
    Type: Grant
    Filed: December 28, 2004
    Date of Patent: August 7, 2007
    Assignee: Sandia Corporation
    Inventors: Victor C. Rucker, Renée Shediac, Blake A. Simmons, Karen L. Havenstrite
  • Publication number: 20060201868
    Abstract: Disclosed herein are methods and devices for assaying and concentrating analytes in a fluid sample using dielectrophoresis. As disclosed, the methods and devices utilize substrates having a plurality of pores through which analytes can be selectively prevented from passing, or inhibited, on application of an appropriate electric field waveform. The pores of the substrate produce nonuniform electric field having local extrema located near the pores. These nonuniform fields drive dielectrophoresis, which produces the inhibition. Arrangements of electrodes and porous substrates support continuous, bulk, multi-dimensional, and staged selective concentration.
    Type: Application
    Filed: March 11, 2005
    Publication date: September 14, 2006
    Inventors: Blake Simmons, Gregory McGraw, Allen Salmi, Gregory Fiechtner, Eric Cummings, Yolanda Fintschenko