Patents by Inventor Joseph J. Schwab

Joseph J. Schwab 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: 7572872
    Abstract: Nanostructured chemicals such as polyhedral oligomeric silsesquioxanes, polyhedral oligomeric silicates, and polyhedral oligomeric metallasesquioxanes are attached to living and nonliving systems as biomaterials to provide a nanoscopic topology that favors biomimetic function and cellular modulation. The resulting surface is nanoscopically thin, nanoscopically dispersed, provides systematic chemistry, surface area, surface volume, surface topology, and is essentially free of impurities, and has controllable properties through selection of composition, R groups, nanostructure size and topology. Highly shape specific and chemically tailorable nanostructured molecules are sized to biological material dimensions and are compatible with all sterilization methods.
    Type: Grant
    Filed: April 24, 2006
    Date of Patent: August 11, 2009
    Inventors: Jason T. Flodin, Joseph D. Lichtenhan, Joseph J. Schwab, Yi-Zhong An, Xuan Fu, Zachary Kemp
  • Publication number: 20090176006
    Abstract: Nanostructured chemicals such as polyhedral oligomeric silsesquioxanes, polyhedral oligomeric silicates, and polyhedral oligomeric metallasesquioxanes are attached to living and nonliving systems as biomaterials to provide a nanoscopic topology that favors biomimetic function and cellular modulation. The resulting surface is nanoscopically thin, nanoscopically dispersed, provides systematic chemistry, surface area, surface volume, surface topology, and is essentially free of impurities, and has controllable properties through selection of composition, R groups, nanostructure size and topology. Highly shape specific and chemically tailorable nanostructured molecules are sized to biological material dimensions and are compatible with all sterilization methods.
    Type: Application
    Filed: April 24, 2006
    Publication date: July 9, 2009
    Inventors: Jason T. Flodin, Joseph D. Lichtenhan, Joseph J. Schwab, Yi-Zhong An, Xuan Fu, Zachary Kemp
  • Patent number: 7553904
    Abstract: A method of using olefin containing nanostructured chemicals and silanol containing nanostructured chemicals as high temperature resins is described. Vinyl containing nanostructured chemicals are particularity effective in thermosets as they control the motions of polymer chains, and segments, at the molecular level. Silanol containing nanostructured chemicals are particularity effective in thermosets containing polar groups as the silanol can enhance the reactivity of these groups. Because of their tailorable compatibility with fluorinated polymers, nanostructured chemicals can be readily and selectively incorporated into polymers by direct blending and polymerization processes. The incorporation of a nanostructured chemical into a polymer favorably impacts a multitude of polymer physical properties. Properties most favorably improved are heat distortion and flammability characteristics, permeability, optical properties, texture, feel and durability.
    Type: Grant
    Filed: September 12, 2005
    Date of Patent: June 30, 2009
    Assignee: Hybrid Plastics, Inc.
    Inventors: Joseph D. Lichtenhan, Qibo Liu, Yan-Jyh Lee, Xuan Fu, Sukhendu Hait, Joseph J. Schwab, Rusty L. Blanski, Patrick N. Ruth
  • Publication number: 20090082502
    Abstract: A method of using metallized polyhedral oligomeric silsesquioxanes as cure promoters and catalysts for polyurethanes.
    Type: Application
    Filed: May 21, 2008
    Publication date: March 26, 2009
    Inventors: Joseph D. Lichtenhan, Joseph J. Schwab, Xuan Fu
  • Patent number: 7491783
    Abstract: A synthesis process for polyhedral oligomeric silsesquioxanes that produces in high yield a low resin content, solvent free, and trace metal free monomer suitable for use in microelectronic applications. POSS silanols are reacted with a silane coupling agent in the presence of a solvent and a superbase.
    Type: Grant
    Filed: December 7, 2005
    Date of Patent: February 17, 2009
    Inventors: Joseph J. Schwab, Yi-Zhong An, Sanjay Malik, Binod B. De
  • Patent number: 7485692
    Abstract: A synthesis process for polyhedral oligomeric silsesquioxanes using phosphazene superbases to produce in high yield a low resin content, solvent free, and trace metal free monomer suitable for use in microelectronic, biological, and medical applications involving polymerization, grafting, and alloying.
    Type: Grant
    Filed: March 7, 2006
    Date of Patent: February 3, 2009
    Assignee: Hybrid Plastics, Inc.
    Inventors: Joseph J. Schwab, Yi-Zhong An
  • Publication number: 20080262162
    Abstract: Metallized nanostructured chemicals are incorporated at the molecular level as alloying agents for the reinforcement of polymer microstructures, including polymer coils, domains, chains, and segments. Direct blending processes are effective because of the tailorable compatibility of the metallized nanostructured chemicals with polymers.
    Type: Application
    Filed: August 21, 2006
    Publication date: October 23, 2008
    Inventors: Joseph D. Lichtenhan, Xuan Fu, Joseph J. Schwab, Paul Wheeler, H.C.L. Abbenhuis
  • Publication number: 20080221262
    Abstract: A method of using fluorinated-nanostructured POSS chemicals as alloying agents for the reinforcement of polymer microstructures, including polymer coils, domains, chains, and segments, at the molecular level. Because of their tailorable compatibility with nonfluorinated polymers, nanostructured chemicals can be readily and selectively incorporated into polymers by direct blending processes. The incorporation of a nanostructured chemical into a polymer favorably impacts a multitude of polymer physical properties. Properties most favorably improved are surface properties, such as lubricity, contact angle, water repellency, deicing, surface tension, and abrasion resistance. Improved surface properties may be useful for applications such as anti-icing surfaces, non-wetting surfaces, low friction surfaces, self cleaning. Other properties improved include time dependent mechanical and thermal properties such as heat distortion, creep, compression set, shrinkage, modulus, hardness and biological compatibility.
    Type: Application
    Filed: March 19, 2007
    Publication date: September 11, 2008
    Inventors: Joseph M. Mabry, Timothy S. Haddad, Sarah Anne Mazzella, Sukhendu B. Hait, Joseph J. Schwab, Joseph D. Lichtenhan
  • Publication number: 20080051546
    Abstract: A synthetic process for polyhedral oligomeric silsesquioxanes (POSS) and polyhedral oligomeric silicates (POS) produces silanol and siloxide molecules containing both olefinic groups and alkyl or aromatic groups. Olefin-bearing POSS silanol/siloxides are derivatized into a variety of chemical species while retaining the ability to further derivatize the silanol/siloxide.
    Type: Application
    Filed: August 16, 2006
    Publication date: February 28, 2008
    Inventors: Joseph J. Schwab, Yi-Zhong An, Sukhendu B. Hait, W. A. Reinerth, H.C.L. Abbenhuis
  • Patent number: 7265194
    Abstract: This invention teaches the preparation and compositions of POSS nanostructured chemicals bearing a variety of onium-type surfactants. The surfactants serve as low-cost compatibilizing groups for polyhedral oligomeric silsesquioxane and polyhedral oligomeric silicate nanostructures with man-made polymer and biological systems. Variations of the surfactants also provide reactivity for the nanostructured chemicals with man-made and biological materials. The surfactant bearing nanostructured chemicals are useful as alloying agents is for controlling the structure and bulk physical properties of materials from the nanoscopic length scale. Alternately, the surfactants can be eliminated from the nanostructures to render the formation of nanoscopically dispersed silica particles.
    Type: Grant
    Filed: October 18, 2004
    Date of Patent: September 4, 2007
    Assignee: Hybrid Plastics Inc.
    Inventors: Joseph D. Lichtenhan, Joseph J. Schwab
  • Patent number: 7217683
    Abstract: Nanoscale chemicals based on polyhedral oligomeric silsesquioxanes (POSS) and polyhedral oligomeric silicates (POS) are taught as lubricants, mold release agents, and as additives to control the viscosity, lubrication, wear, and thermal properties of conventional lubricous materials. The precisely defined nanoscopic dimensions of POSS materials enable viscosity, miscibility, and thermal properties to be (increased) or reduced (decreased) as desired. A key feature to the successful tailoring of properties is the inherent thermal and chemical stability of the POSS/POS nanostructure and the ability to control its topology and chemical potential to match that of surfaces and other materials.
    Type: Grant
    Filed: September 5, 2002
    Date of Patent: May 15, 2007
    Inventors: Rusty L. Blanski, Shawn H. Phillips, Stephen L. Rodgers, Joseph D. Lichtenhan, Joseph J. Schwab
  • Patent number: 7193015
    Abstract: A method of using nanostructured chemicals as alloying agents for the reinforcement of flouropolymer microstructures, including polymer coils, domains, chains, and segments, at the molecular level. Because of their tailorable compatibility with fluorinated polymers, nanostructured chemicals can be readily and selectively incorporated into polymers by direct blending processes. Properties most favorably improved are time dependent mechanical and thermal properties such as heat distortion, creep, compression set, shrinkage, modulus, hardness and abrasion resistance. In addition to mechanical properties, other physical properties are favorably improved, including lower thermal conductivity, fire resistance, and improved oxygen permeability. These improved properties may be useful in a number of applications, including space-survivable materials and creep resistant seals and gaskets. Improved surface properties may be useful for applications such as anti-icing or non-wetting surfaces or as low friction surfaces.
    Type: Grant
    Filed: March 31, 2004
    Date of Patent: March 20, 2007
    Inventors: Joseph M. Mabry, Rene I. Gonzalez, Rusty L. Blanski, Patrick N. Ruth, Brent D. Viers, Joseph J. Schwab, Joseph D. Lichtenhan
  • Patent number: 6972312
    Abstract: Three processes for the manufacture of polyhedral oligomeric silsesquioxanes (POSS) which utilize the action of bases that are capable of either attacking silicon or any compound that can react with a protic solvent (e.g. ROH, H2O etc.) and generate hydroxide [OH]?, alkoxide [RO]??, etc. The first process utilizes such bases to effectively redistribute the silicon-oxygen frameworks in polymeric silsesquioxanes [RSiO1.5]28 where ?=1-1,000,000 or higher into POSS nanostructures of formulas [(RSiO1.5)n?#, homoleptic, [(RXSiO1.5)n]?#, functionalized homoleptic, [(RSiO1.5)m(R?SiO1.5)n]?#, heteroleptic, and {(RSiO1.5)m(RXSiO1.0)n}?#, functionalized heteroleptic nanostructures. The second process utilizes base to aid in the formation of POSS nanostructures of formulas [(RSiO1.5)n]?# homoleptic and [(RSiO1.5)m(R?SiO1.5)n]?# heteroleptic and [(RSiO1.5)m(RXSiO1.
    Type: Grant
    Filed: August 4, 2000
    Date of Patent: December 6, 2005
    Assignee: Hybrid Plastics LLC
    Inventors: Joseph D. Lichtenhan, Joseph J. Schwab, Yi-Zong An, William Reinerth, Michael J. Carr, Frank J. Feher, Raquel Terroba, Qibo Liu
  • Patent number: 6933345
    Abstract: The nanoscopic dimensions of polyhedral oligomeric silsesquioxanes (POSS) and polyhedral oligomeric silicates (POS) materials ranges from 0.7 nm to 5.0 nm and enables the thermomechanical and physical properties of polymeric materials to be improved by providing nanoscopic reinforcement of polymer chains at a length scale that is not possible by physically smaller aromatic chemical systems or larger fillers and fibers. A simple and cost effective method for incorporating POSS/POS nanoreinforcements onto polymers via the reactive grafting of suitably functionalized POSS/POS entities with polymeric systems amenable to such processes is described. The method teaches that the resulting POSS-grafted-polymers are particularly well suited for alloying agents by nongrafted POSS entitles such as molecular silicas. The successful alloying of POSS-polymers is aided because their interfacial tensions are reduced relative to non-POSS containing systems.
    Type: Grant
    Filed: January 23, 2003
    Date of Patent: August 23, 2005
    Assignee: Hybrid Plastics, LLP
    Inventors: Joseph D. Lichtenhan, Frank J. Feher, Joseph J. Schwab, Sixun Zheng
  • Patent number: 6927270
    Abstract: Efficient processes have been developed for the cost effective functionalization of polyhedral oligomeric silsesquioxane-silanols (POSS-Silanols) and for the manufacture of polyfunctional polyhedral oligomeric silsesquioxanes. The processes utilize the action of bases or acids on silane coupling agents. The preferred process utilizes base to promote the silylation of POSS-Silanols of the formula [(RSiO1.5)n(R(HO)SiO1.0)m]?# with silane coupling agents to form POSS species with functionalized incompletely condensed nanostructures [(RSiO1.5)n(R(YSiR2O)SiO1.0)m]?# or functionalized completely condensed nanostructures [(RSiO1.5)n(YSiO1.5)1]?#. The process can alternately be conducted with acids. A second process utilizes base to alkylate POSS-Silanols with functionalized alkyl halides. A third related process utilizes base to react with silane coupling agents to form polyfunctional, fully condensed POSS species of formula [(YSiO1.5)n]?#. This process can also alternately be conducted under acidic conditions.
    Type: Grant
    Filed: June 27, 2002
    Date of Patent: August 9, 2005
    Assignee: Hybrid Plastics LLP
    Inventors: Joseph D. Lichtenhan, Joseph J. Schwab, Yi-Zhong An, Qibo Liu, Timothy S. Haddad
  • Patent number: 6911518
    Abstract: Processes have been developed for the manufacture of polyhedral oligomeric silsesquioxanes (POSS), polysilsesquioxanes, polyhedral oligomeric silicates (POS), and siloxane molecules bearing reactive ring-strained cyclic olefins (e.g. norbornenyl, cyclopentenyl, etc. functionalities). The preferred manufacturing processes employ the silation of siloxides (Si—OA, where A=H, alkaline or alkaline earth metals) with silane reagents that contain at least one reactive ring-strained cyclic olefin functionality [e.g., X3-ySi(CH3)y(CH2)2 where y=1-2 and X=OH, Cl, Br, I, alkoxide OR, acetate OOCR, peroxide OOR, amine NR2, isocyanate NCO, and R]. Alternatively, similar products can be prepared through hydrosilation reactions between silanes containing at least one silicon-hydrogen bond (Si—H) with ring-strained cyclic olefin reagents [e.g., 5-vinyl, 2 norbornene CH2?CH, cyclopentadiene]. The two processes can be effectively practiced using polymeric silsesquioxanes [RSiO1.
    Type: Grant
    Filed: December 21, 2000
    Date of Patent: June 28, 2005
    Assignee: Hybrid Plastics, LLC
    Inventors: Joseph D. Lichtenhan, Joseph J. Schwab, Yi-Zong An, William Reinerth, Frank J. Feher
  • Patent number: 6767930
    Abstract: Performance additives in high performance polymers using polyhedral oligomeric silsesquioxanes (POSS) and polyhedral oligomeric silicates (POS) as nanoscopic reinforcements, porosity control agents, thermal and oxidative stability aids to improve the properties of the polymers.
    Type: Grant
    Filed: September 9, 2002
    Date of Patent: July 27, 2004
    Inventors: Steven A. Svejda, Shawn H. Phillips, Rene I. Gonzalez, Frank J. Feher, Joseph D. Lichtenhan, Joseph J. Schwab, William A. Reinerth
  • Publication number: 20040068075
    Abstract: Processes have been developed for the manufacture of polyhedral oligomeric silsesquioxanes (POSS), polysilsesquioxanes, polyhedral oligomeric silicates (POS), and siloxane molecules bearing reactive ring-strained cyclic olefins (e.g. norbornenyl, cyclopentenyl, etc. functionalities). The preferred manufacturing processes employ the silation of siloxides (SiOA, where A=H, alkaline or alkaline earth metals) with silane reagents that contain at least one reactive ring-strained cyclic olefin functionality [e.g., X3-ySi(CH3)y(CH2)2 where y=1-2 and X=OH, Cl, Br, I, alkoxide OR, acetate OOCR, peroxide OOR, amine NR2, isocyanate NCO, and R]. Alternatively, similar products can be prepared through hydrosilation reactions between silanes containing at least one silicon-hydrogen bond (Si—H) with ring-strained cyclic olefin reagents [e.g., 5-vinyl, 2 norbornene CH2═CH, cyclopentadiene].
    Type: Application
    Filed: August 23, 2001
    Publication date: April 8, 2004
    Applicant: Hybrid Plastics
    Inventors: Joseph D. Lichtenhan, Joseph J. Schwab, Yi-Zong An, William Reinerth, Frank J. Feher
  • Patent number: 6716919
    Abstract: A method of using nanostructured chemicals as alloying agents for the reinforcement of polymer microstructures, including polymer coils, domains, chains, and segments, at the molecular level. Because of their tailorable compatibility with polymers, nanostructured chemicals can be readily and selectively incorporated into polymers by direct blending processes. The incorporation of a nanostructured chemical into a polymer favorably impacts a multitude of polymer physical properties. Properties most favorably improved are time dependent mechanical and thermal properties such as heat distortion, creep, compression set, shrinkage, modulus, hardness and abrasion resistance. In addition to mechanical properties, other physical properties are favorably improved, including lower thermal conductivity, fire resistance, and improved oxygen permeability.
    Type: Grant
    Filed: March 26, 2001
    Date of Patent: April 6, 2004
    Assignee: Hybrid Plastics
    Inventors: Joseph D. Lichtenhan, Joseph J. Schwab, Andre Lee, Shawn Phillips
  • Publication number: 20030055193
    Abstract: Efficient processes have been developed for the cost effective functionalization of polyhedral oligomeric silsesquioxane-silanols (POSS-Silanols) and for the manufacture of polyfunctional polyhedral oligomeric silsesquioxanes. The processes utilize the action of bases or acids on silane coupling agents. The preferred process utilizes base to promote the silylation of POSS-Silanols of the formula [(RSiO1 5)n(R(HO)SiO1 0)m]&Sgr;# with silane coupling agents to form POSS species with functionalized incompletely condensed nanostructures [(RSiO1 5)n(R(YSiR2O)SiO1 0)m]&Sgr;# or functionalized completely condensed nanostructures [(RSiO1 5)n(YSiO1 5)1]&Sgr;#. The process can alternately be conducted with acids. A second process utilizes base to alkylate POSS-Silanols with functionalized alkyl halides. A third related process utilizes base to react with silane coupling agents to form polyfunctional, fully condensed POSS species of formula [(YSiO1.5)n]&Sgr;#.
    Type: Application
    Filed: June 27, 2002
    Publication date: March 20, 2003
    Inventors: Joseph D. Lichtenhan, Joseph J. Schwab, Yi-Zhong An, Qibo Liu, Timothy S. Haddad