Patents Issued in July 29, 2014
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Patent number: 8791191Abstract: Nanoscale ZnO particles are used in aqueous binder systems for increasing the blocking resistance, for reducing the drying time and/or for increasing the resistance to chemicals, detergents, heat, weathering or biological assault on the dried or cured systems. Described further more are nanoscale zinc oxide particles surface-modified with phosphonocarboxylic acid, and their use.Type: GrantFiled: February 2, 2010Date of Patent: July 29, 2014Assignee: Buehler Partec GmbHInventors: Detlef Burgard, Marc Herold, Klaus Steingroever
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Patent number: 8791192Abstract: There are provided a resin composition including a polylactic acid which (i) includes a poly-L-lactic acid (component B-1) and a poly-D-lactic acid (component B-4), (ii) has a weight ratio of the component B-1 to the component B-4 (component B-1/component B-4) of 10/90 to 90/10, and (iii) shows a proportion of melt peaks at 195° C. or higher to all melt peaks in a temperature rising process in measurement by a differential scanning calorimeter (DSC) of at least 20%; a molded article of the resin composition; and methods for producing the resin composition and the molded article.Type: GrantFiled: April 18, 2013Date of Patent: July 29, 2014Assignee: Teijin LimitedInventors: Katsuhiko Hironaka, Fumitaka Kondo, Keiichiro Ino, Yuichi Matsuno, Kiyotsuna Toyohara, Hirotaka Suzuki, Ryuji Nonokawa, Takaaki Matsuda
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Patent number: 8791193Abstract: A roofing membrane comprising an olefinic rubber; and from about 20 to about 250 parts by weight of a silica filler per 100 parts by weight rubber; wherein the silica filler is chemically coupled to the olefinic rubber; and wherein the roofing membrane is non-black.Type: GrantFiled: November 2, 2011Date of Patent: July 29, 2014Assignee: Firestone Building Products Company, LLCInventors: Hao Wang, James A. Davis, William F. Barham, Jr.
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Patent number: 8791194Abstract: A composition comprising a fluid, and a material dispersed in the fluid, the material made up of particles having a complex three dimensional surface area such as a sharp blade-like surface, the particles having an aspect ratio larger than 0.7 for promoting kinetic boundary layer mixing in a non-linear-viscosity zone. The composition may further include an additive dispersed in the fluid. The fluid may be a thermopolymer material. A method of extruding the fluid includes feeding the fluid into an extruder, feeding additives into the extruder, feeding a material into the extruder, passing the material through a mixing zone in the extruder to disperse the material within the fluid wherein the material migrates to a boundary layer of the fluid to promote kinetic mixing of the additives within the fluid, the kinetic mixing taking place in a non-linear viscosity zone.Type: GrantFiled: February 1, 2013Date of Patent: July 29, 2014Assignee: Ecopuro, LLCInventor: William L. Johnson, Sr.
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Patent number: 8791195Abstract: Disclosed is a toughened film forming agent for use in a fiber sizing, a finish coating or a binder composition, where the toughened film forming agent includes a film forming polymer and a toughening agent both dispersed in water. The toughening agent may be core shell polymers, rubber, thermoplastic materials, nanomaterials, nanofibers, including any combination or subset thereof. The film forming polymer may be epoxy resins, polyurethane resins, epoxy-polyurethane resins, polyester resins, epoxy-polyester resins, polyvinylacetate resins, polypropylene resins, including any combination or subset thereof.Type: GrantFiled: February 26, 2010Date of Patent: July 29, 2014Assignee: Momentive Specialty Chemicals Inc.Inventors: Walter Henry Christiansen, III, Carlton E. Ash, Paul W. Langemeier
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Patent number: 8791196Abstract: Provided is an adhesive composition for labels, which can be easily applied at a relatively low temperature and has satisfactory die cutting properties so that the adhesive composition can contribute to an improvement of the productivity of labels, and which is capable of producing labels having excellent holding power and tackiness. There is disclosed an adhesive composition for labels comprising: a block copolymer A represented by the following general formula (A); a polymer C, which is a polymer having a glass transition temperature of ?30° C. or lower, or a block copolymer that has a polymer block having a glass transition temperature of ?30° C. or lower at an end of the polymer chain; and a tackifier resin D.Type: GrantFiled: March 29, 2010Date of Patent: July 29, 2014Assignee: Zeon CorporationInventors: Ryouji Oda, Sadaharu Hashimoto
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Patent number: 8791197Abstract: The present invention provides a rubber composition for a winter tire which improves in performance on ice and snow, wet grip performance, and abrasion resistance in a balanced manner, and also has favorable proccessability; and a winter tire including a tread produced using the rubber composition. The present invention relates to a rubber composition for a winter tire which contains predetermined amounts of natural rubber, butadiene rubber, aromatic oil, silica, and carbon black, and also contains a specific silane coupling agent that includes a linking unit A represented by the following formula (1) and a linking unit B represented by the following formula (2) and has a predetermined content of the linking unit B.Type: GrantFiled: July 26, 2012Date of Patent: July 29, 2014Assignee: Sumitomo Rubber Industries, Ltd.Inventor: Ryoji Kojima
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Patent number: 8791198Abstract: A curable aqueous composition that includes a first polymer that includes carboxyl groups, and a second component that includes a second water insoluble polymer and a stabilizer. The second component includes functional groups that react with the carboxyl groups of the first polymer during cure, is free from carboxylic acid groups, or a combination thereof. The composition, when dry, exhibits a first Tg of at least 10° C. and a second Tg of at least 50° C.Type: GrantFiled: April 30, 2012Date of Patent: July 29, 2014Assignee: H.B. Fuller CompanyInventors: Wayne P. Miller, Patrick D. Gleason, Michael Wright
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Patent number: 8791199Abstract: A HASE-type rheology modifier containing an associative monomer which is functionalised by a hydrophobic group of an oxo alcohol base is provided. A method to prepare the HASE rheology modifier and its use in a method to thicken and create a Newtonian rheological profile in an aqueous formulation such as a water based paint is also provided.Type: GrantFiled: February 28, 2011Date of Patent: July 29, 2014Assignee: Coatex S.A.S.Inventors: Jean-Marc Suau, Denis Ruhlmann
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Patent number: 8791200Abstract: The present invention relates to a polyurethaneurea solution having a polyurethaneurea having a structural unit of the formula (I) and terminated with at least one copolymer unit of the group consisting of a polyethylene oxide, a polypropylene oxide, and mixtures thereof.Type: GrantFiled: August 22, 2009Date of Patent: July 29, 2014Assignee: Bayer MaterialScience AGInventors: Jürgen Köcher, Christian Wamprecht
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Patent number: 8791201Abstract: The present invention relates to a compound characterized by the following formula: wherein each R1 is independently methyl or ethyl; and n 1 to 10. The compound is useful in preparing hydrophobically modified alkylene oxide urethane polymers, which are useful as rheology modifiers for coatings formulations.Type: GrantFiled: April 18, 2013Date of Patent: July 29, 2014Assignee: Rohm and Haas CompanyInventors: John J. Rabasco, Barrett R. Bobsein
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Patent number: 8791202Abstract: A phase change ink composition including (a) an ink vehicle; (b) a dispersing agent; (c) a colorant; and (d) organic fiber shaped nanowhiskers, inorganic fiber shaped nanowhiskers, or a combination of organic and inorganic fiber shaped nanowhiskers, wherein the organic fiber shaped nanowhiskers, the inorganic fiber shaped nanowhiskers, or a combination thereof, are encapsulated or functionalized to enhance compatibility with the ink vehicle; and wherein the colorant and the organic fiber shaped nanowhiskers, the inorganic fiber shaped nanowhiskers, or combination of organic and inorganic fiber shaped nanowhiskers are substantially resistant to aggregation and settling in the ink vehicle.Type: GrantFiled: April 21, 2008Date of Patent: July 29, 2014Assignee: Xerox CorporationInventors: Marcel P. Breton, Caroline M. Turek
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Patent number: 8791203Abstract: Sizing compositions to size fibers or particles used in plastic composites are described. The compositions may include a solution with a polymerization compound selected from: (a) at least one non-isocyanate-containing polymerization initiator (PI) for initiating the polymerization of caprolactam monomers; or (b) at least one precursor for a non-isocyanate-containing PI for initiating the polymerization of caprolactam monomers. Methods of making the sizing the composition, as well as methods of making reinforced thermoplastic composites from sized fibers or particles, are also described.Type: GrantFiled: December 22, 2011Date of Patent: July 29, 2014Assignee: Johns ManvilleInventors: Rajappa Tadepalli, Kiarash Alavi Shooshtari, Jawed Asrar, Klaus Friedrich Gleich
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Patent number: 8791204Abstract: A process for the manufacture of a polymer dispersion from a mixture of a first polypropylene polymer having sufficient carboxylic acid and/or carboxylic acid anhydride groups equivalent to an acid value of from 2 to 50 mg KOH/g nv polymer and a second polymer having a molar excess of functional groups capable of reacting with the carboxylic acid and/or carboxylic acid anhydride groups of the polypropylene is provided. Also provided herein are polypropylene dispersions in organic carrier liquid prepared by such method, as well as coating compositions comprising the dispersion and articles coated with the coating composition.Type: GrantFiled: November 10, 2009Date of Patent: July 29, 2014Assignee: Akzo Nobel Coatings International B.V.Inventor: Riaz Ahmad Choudhery
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Patent number: 8791205Abstract: The invention is related to compositions suitable for the fabrication of pipes, and other articles, with excellent performance properties. The invention provides a composition, comprising a blend, wherein said blend comprises a high molecular weight ethylene-based interpolymer and a low molecular weight ethylene-based interpolymer, and the high molecular weight ethylene-based interpolymer is a heterogeneously branched linear or a homogeneously branched linear ethylene-based interpolymer, and has a density from 0.922 g/cc to 0.929 g/cc, and a high load melt index (I21) from 0.2 g/10 min to 1.0 g/10 min, and the low molecular weight ethylene-based interpolymer is heterogeneously branched linear or a homogeneously branched linear ethylene-based interpolymer, and has a density from 0.940 g/cc to 0.955 g/cc, and a melt index (I2) from 6 g/10 min to 50 g/10 min. The blend has a single peak in an ATREF profile eluting above 30° C., and has a coefficient of viscosity average molecular weight (CMv) less than ?0.Type: GrantFiled: December 17, 2012Date of Patent: July 29, 2014Assignee: Dow Global Technologies LLCInventors: William J. Michie, Jr., Dane Chang, Lonnie G. Hazlitt, Stephanie M. Whited, Michael A. Kinnan, Anthony C. Neubauer, Thoi H. Ho
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Patent number: 8791206Abstract: The present invention relates to a polypropylene composition containing: 100 parts by weight of a blending mixture containing 35 to 45% by weight of a polypropylene copolymer having an ethylene content of 4 to 20% by weight, 7 to 12% by weight of high-density polyethylene, 40 to 50% by weight of an ethylene-?-olefin copolymer rubber, and 5 to 10% by weight of a compatibilizer, and 0.05 to 0.1 parts by weight of a flow adjuster.Type: GrantFiled: March 11, 2013Date of Patent: July 29, 2014Assignee: Toyoda Gosei Co., Ltd.Inventors: Toshihiko Asai, Hajime Miwa
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Patent number: 8791207Abstract: The present application is directed to a non-aqueous composition. The composition comprises a blend of an acidic copolymer derived from a first group of monomers comprising at least one acidic monomer, and a basic copolymer derived from a second group of monomers comprising at least one basic monomer. The basic copolymer may comprise an amide functionality. In some embodiments, the composition comprises an acidic (meth)acrylic copolymer having a Tg less than 0° C., which is derived from a first group of monomers comprising at least one acidic monomer, and a basic (meth)acrylic copolymer having a Tg less than 0° C., which is derived from a second group of monomers comprising at least one basic monomer. Additionally, the composition may comprise a minimum of 0.10 moles of acid/base pairs per kilogram of composition.Type: GrantFiled: January 15, 2010Date of Patent: July 29, 2014Assignee: 3M Innovative Properties CompanyInventors: Ronald S. Steelman, Michael P. Daniels, David J. Yarusso, Craig E. Hamer
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Patent number: 8791208Abstract: Provided is a sheet for a solar cell encapsulant containing (A) an ethylene-based polymer having a melting point of 90° C. or higher and containing an ethylene-derived constituent unit as a main component; (B) an ethylene-vinyl acetate copolymer having a vinyl acetate-derived constituent unit at a content ratio of from 19% to 40% by mass; and (C) a silane coupling agent having an amino group. The sheet for solar cell encapsulant has the excellent transparency and flexibility possessed by an ethylene-vinyl acetate copolymer. Furthermore, a crosslinking treatment is substantially unnecessary, and adhesiveness and adhesion stability that are appropriate for practical use are obtained.Type: GrantFiled: February 15, 2010Date of Patent: July 29, 2014Assignee: Du Pont-Mitsui Polychemicals Co., Ltd.Inventors: Koichi Nishijima, Yasuki Shibata, Koji Kawano
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Patent number: 8791209Abstract: A modified natural rubber particle having carbon-carbon double bands assigned to multifunctional vinyl monomers graft-copolymerized onto the surface of the modified natural rubber particle, which is prepared by graft-copolymerization of multifunctional vinyl monomers having two or more carbon-carbon double bonds onto natural rubber particles or deproteinized natural rubber particles. One of the methods for producing a modified natural rubber particle includes the steps of: forming inclusion complex of the multifunctional vinyl monomers having two or more carbon-carbon double bonds with a guest-protecting agent to protect at least one of the double bonds of the multifunctional vinyl monomers; graft-copolymerizing the resulting inclusion complex onto natural rubber particles or deproteinized natural rubber particles; and deprotecting the protected double bonds by removing the guest-protecting agent from the obtained graft-copolymer.Type: GrantFiled: November 26, 2012Date of Patent: July 29, 2014Assignees: Tokai Rubber Industries, Ltd., National University Corporation Nagaoka University of TechnologyInventors: Osamu Wakisaka, Akihiro Shibahara, Seiichi Kawahara, Yoshimasa Yamamoto, Nanthaporn Pukkate
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Patent number: 8791210Abstract: A method for producing a polyacrylic water-absorbent resin powder includes the steps of: producing an acrylic monomer solution in which gas is dissolved and/or dispersed; polymerizing the monomer solution in the absence of a surface active agent or in the presence of not more than 300 ppm of a surface active agent; during or after polymerizing, fragmenting the resulting hydrated gel crosslinked polymer; and drying the fragmented hydrated gel crosslinked polymer, the gas being dissolved and/or dispersed in the monomer solution by (a) applying pressure to the acrylic monomer solution and the gas; (b) creating swirling flows of the acrylic monomer solution and the gas; or (c) introducing the gas with the acrylic monomer solution via fine holes. The production method efficiently produces a water-absorbent resin having an excellent water-absorption rate without deteriorating a liquid-absorbent property of a sanitary product or the like.Type: GrantFiled: February 17, 2010Date of Patent: July 29, 2014Assignee: Nippon Shokubai Co., Ltd.Inventors: Shigeru Sakamoto, Yoshio Irie, Kozo Nogi, Kunihiko Ishizaki
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Patent number: 8791211Abstract: High refractive polymers, optical elements, and optical elements employing the same are provided. The polymer includes a repeat unit represented by Formula (I): wherein: R1 is independently an H, C1-8 alkyl group, C1-8 alkoxy group, or halides; R2 is independently an C1-8 alkyl group, C1-8 alkoxy group, or C1-8 alkanol group; n is 0, or 1; Y is R3 and R4 are each independently an H, C1-8 alkyl group, C1-8 alkoxy group, cycloalkyl group, aryl group, heteroaryl group, or heterocycloalkyl group, and two adjacent R3 groups are optionally combined with the carbon atoms which they are attached thereto, to form a cycloalkyl group, aryl group, heteroaryl group, or heterocycloalkyl group; and Z is independently a residual group of polycaprolactone diol, or a residual group of polyethylene glycol.Type: GrantFiled: June 14, 2011Date of Patent: July 29, 2014Assignee: Industrial Technology Research InstituteInventors: Ming-Jyh Chang, Zhi-Long Chen
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Patent number: 8791212Abstract: Disclosed are block copolyesters comprising blocks of fluoroether functionalized aromatic polyester and blocks of unmodified aromatic polyester, the block copolyesters having a blockiness index, B, in the range of 0.25 to 1.0. The block copolymers incorporated into blends with unmodified aromatic polyester impart oil and soil resistance to shaped articles prepared from the blends.Type: GrantFiled: November 8, 2011Date of Patent: July 29, 2014Assignee: E I du Pont de Nemours and CompanyInventors: Neville Everton Drysdale, Elizabeth Forrester McCord, Fredrik Nederberg
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Patent number: 8791213Abstract: The invention provides a curable silicone resin composition comprising: (A) an organopolysiloxane containing an aromatic group having two or more alkenyl groups, and having a viscosity at 25° C. of 10 to 1,000,000 mPa·s, (B) an organopolysiloxane having a resin structure, comprising 10 to 80 mol % of a SiO4/2 unit, 1 to 80 mol % of a (R1)2SiO2/2 unit, and 1 to 60 mol % of a (R2)3SiO1/2 unit, and containing a SiOH group in a range of 0.1 to 5.0 mol %, (C) an organohydrogenpolysiloxane having two or more SiH group, and among whole substituents bonded to the silicon atom, 20 to 80 mol % is a phenyl group, and a SiO4/2 unit is less than 5 mol %, and (D) a platinum group metal catalyst, and the component (B) is contained in an amount of 20 to 80% by mass based on a sum of the component (A) and the component (B).Type: GrantFiled: July 1, 2013Date of Patent: July 29, 2014Assignee: Shin-Etsu Chemical Co., Ltd.Inventors: Tomoyuki Mizunashi, Tsutomu Kashiwagi, Kinya Kodama
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Patent number: 8791214Abstract: A low dielectric constant, a low dielectric loss tangent, and heat resistance are achieved. An active ester resin that has a resin structure produced by reacting a polyfunctional phenolic compound (a1) with a monofunctional aromatic carboxylic acid or its chloride (a2) and an aromatic dicarboxylic acid or its chloride (a3). The polyfunctional phenolic compound (a1) is represented by structural formula (1) below: (where Ar represents a benzene ring, a naphthalene ring, a benzene ring nuclear-substituted by an alkyl group having 1 to 4 carbon atoms, or a naphthalene ring nuclear-substituted by an alkyl group having 1 to 4 carbon atoms, X represents a methylene group, a divalent cyclic aliphatic hydrocarbon group, a phenylene dimethylene group, or a biphenylene-dimethylene group, and n represents the number of repeating units and the average thereof is in a range of 0.5 to 10).Type: GrantFiled: May 25, 2012Date of Patent: July 29, 2014Assignee: DIC CorporationInventors: Kan Takeuchi, Etsuko Suzuki, Kunihiro Morinaga, Kazuo Arita
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Patent number: 8791215Abstract: The present invention relates to a process for the polymerization of an olefin monomer. In particular, the present invention relates to a process for the polymerization of an olefin monomer and one or more optional comonomers in presence of a polymerization catalyst and hydrogen, said process being characterized by an improved control of the hydrogen concentration in the polymerization reactor. In addition, the present invention provides for an improved hydrogen feeding system to a polymerization reactor. Furthermore, the present invention provides for a polymerization reactor comprising such an improved hydrogen feeding system.Type: GrantFiled: June 21, 2013Date of Patent: July 29, 2014Assignee: Total Research & Technology FeluyInventor: Daan Dewachter
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Patent number: 8791216Abstract: A catalyst system for heterogeneous catalysis of organic compound conversion reactions is disclosed. The system includes a reaction product of (i) a BF3/alcohol catalyst complex and (ii) an activated metal oxide support for the catalyst complex. The reaction product includes an amount of the catalyst complex effective for catalyzing the conversion reaction.Type: GrantFiled: March 9, 2011Date of Patent: July 29, 2014Assignee: Petrochemical Supply, Inc.Inventor: C. Edward Baxter, Jr.
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Patent number: 8791217Abstract: Catalyst compositions containing N,N-bis[2-hydroxidebenzyl]amine transition metal compounds are disclosed. Methods for making these transition metal compounds and for using such compounds in catalyst compositions for the polymerization or oligomerization of alpha olefins also are provided.Type: GrantFiled: December 28, 2011Date of Patent: July 29, 2014Assignee: Chevron Phillips Chemical Company LPInventors: Mark L. Hlavinka, Qing Yang, Brooke L. Small, Youlu Yu
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Patent number: 8791218Abstract: To provide a water/oil repellent composition which can impart water/oil repellency to a surface of an article without having its texture deteriorated, and has excellent durability against washing and stability, a method for producing such a composition, and an article treated with such a water/oil repellent composition. A water/oil repellent composition which comprises a copolymer having polymerized units derived from monomer (a), polymerized units derived from monomer (b) and polymerized units derived from monomer (c). Here, monomer (a) is a compound represented by the formula: (Z—Y)nX; wherein Z is a C1-6 perfluoroalkyl group or the like; Y is a bivalent organic group or a single bond; n is 1 or 2; and X is a polymerizable unsaturated group; monomer (b) is a (meth)acrylate having no Rf group and having a C12-18 alkyl group; and monomer (c) is monomer (c1) having no Rf group and having a blocked isocyanate group or monomer (c2) having no Rf group and having at least two polymerizable unsaturated groups.Type: GrantFiled: October 28, 2009Date of Patent: July 29, 2014Assignee: Asahi Glass Company, LimitedInventors: Kazunori Sugiyama, Kyouichi Kaneko, Yuuichi Oomori
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Patent number: 8791219Abstract: The present inventions are directed to novel medical adhesives and their use, for example, in biomedical applications. These compositions and applications allow for improved adhesion with and between mammalian tissues.Type: GrantFiled: March 1, 2013Date of Patent: July 29, 2014Assignees: California Institute of Technology, The Regents Of The University Of CaliforniaInventors: Robert H. Grubbs, Hoyong Chung, Michael Richard Harrison
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Patent number: 8791220Abstract: The present invention relates to porous inorganic/organic homogenous copolymeric hybrid material materials, including particulates and monoliths, methods for their manufacture, and uses thereof, e.g., as chromatographic separations materials.Type: GrantFiled: April 30, 2009Date of Patent: July 29, 2014Assignee: Waters Technologies CorporationInventors: Zhiping Jiang, John E. O'Gara, Raymond P. Fisk, Kevin D. Wyndham, Darryl W. Brousmiche
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Patent number: 8791221Abstract: Provided is a metallosiloxane compound (A) prepared by reacting a bifunctional silane compound (S1), a monofunctional silane compound (S2), a boron compound (M), and optionally H2O in a molar ratio of [the silane compound (S1)]:[the silane compound (S2)]:[the boron compound (M)]:[H2O] of n:m:k:a, where n, m, k, and a satisfy all conditions (i), (ii), and (iii), in which the metallosiloxane compound has at least one Si—H bond or C2-10 alkenyl group per molecule, and the conditions (i), (ii), and (iii) are expressed as follows: (i) n>0, m>0, k>0, a?0; (ii) m/n?0.5; and (iii) (n+m)/k?1.8.Type: GrantFiled: November 29, 2011Date of Patent: July 29, 2014Assignee: Daicel CorporationInventor: Tomoya Egawa
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Patent number: 8791222Abstract: This invention concerns a polymer coating composition for use as non-focal optical power limiting dye containing polymeric materials. This composition contains: (1) one or more Modified Polymers comprising a Polymer, such as a hyperbranched polymer family, especially HB-PCS, HB-PU, HB-PUSOX or PC with one or more of: a) reverse saturable dye (RSA), b) multi-photon absorption dye (MPA), c) an azo dye, or d) absorption dye, which dye is chemically bonded to the pendant groups of the Polymer (along its chain and/or termini) or which forms a part of the backbone of the Polymer; (2) carbon nanotubes (CNT) as optical power limiters (OPL); and (3) a self-focusing component.Type: GrantFiled: September 22, 2010Date of Patent: July 29, 2014Assignee: Oxazogen, Inc.Inventors: Abhijit Sarkar, Petar R. Dvornic, James P. Godschalx
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Patent number: 8791223Abstract: Methods of catalyzing chemical reactions are provided. A tri-substituted phosphine having at least one substituent that is an alkyl group is added as a catalyst to reaction mixtures. Reaction mixtures contain uretdiones, anhydrides, or isocyanate functional materials including isocyanurates, in various combinations with hydroxyl, thiol, and/or amine functional materials. Curable compositions comprising these catalysts and reaction mixtures are also provided.Type: GrantFiled: October 8, 2010Date of Patent: July 29, 2014Assignee: PPG Industries Ohio, Inc.Inventors: Michael Zalich, Mark P. Bowman, Jonathan T. Martz, Stephen John Thomas, Gregory J. McCollum
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Patent number: 8791224Abstract: Compositions for golf balls that are formed from the reaction product of an isocyanate-containing component and an amine-terminated component having an unsaturated backbone, which is cured with a curing agent. In particular, the compositions of the invention may be formed from a prepolymer having urea linkages and at least one carbon-carbon double bond in the backbone that is cured with an amine-terminated component resulting in golf balls having weight gain comparable to ionomers and less loss of COR as compared to ionomers and conventional polyurethanes after submersion in water.Type: GrantFiled: May 16, 2008Date of Patent: July 29, 2014Assignee: Acushnet CompanyInventors: Randy Petrichko, Shawn Ricci
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Patent number: 8791225Abstract: A method for making polyethylene terephthalate resin in which a titanium-nitride polycondensation catalyst is introduced during the initial stages of esterification or transesterification. The titanium-nitride polycondensation catalyst may be added to a mixture containing a terephthalate component and a diol component during the formation of a polyethylene terephthalate precursor. Subsequent polycondensation of the polyethylene terephthalate precursor forms a polyethylene terephthalate polymer.Type: GrantFiled: June 5, 2009Date of Patent: July 29, 2014Assignee: DAK Americas Mississippi Inc.Inventor: Carl Steven Nichols
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Patent number: 8791226Abstract: The present invention generally relates to the large-scale (e.g., greater than 1 kg scale) preparation of low molecular weight polylysine or polyornithine in high yield by preparing a polylysine or polyornithine having a weight average molecular weight from about 12,500 Daltons to about 22,000 Daltons and hydrolyzing it to produce a polylysine or polyornithine having a weight average molecular weight from about 5,500 Daltons to about 12,000 Daltons.Type: GrantFiled: February 5, 2013Date of Patent: July 29, 2014Assignee: Sigma-Aldrich Co. LLCInventor: Ettigounder Ponnusamy
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Patent number: 8791227Abstract: A crosslinked aromatic polyimide having shape memory properties and methods of making the same. The crosslinked aromatic polyimide comprises at least one aromatic diamine, at least one dianhydride monomer, and a tri(oxybenzene-amine) crosslinker. The crosslinked aromatic polyimide polymers and films possess superior shape memory properties at temperatures above 225° C.Type: GrantFiled: July 11, 2012Date of Patent: July 29, 2014Assignee: The United States of America as represented by the Secretary of the Air ForceInventors: Loon-Seng Tan, David Huabin Wang, Hilmar Koerner, Richard A. Vaia
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Patent number: 8791228Abstract: Process for bulk polymerization of lactide at a temperature between 160° C. and 195° C. in the presence of a zinc-based catalyst.Type: GrantFiled: December 3, 2010Date of Patent: July 29, 2014Assignee: Futerro S.A.Inventor: Sabine Sirol
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Patent number: 8791229Abstract: A series of novel phosphorus-containing compounds having the following formula is provided: in which: R1-R4, A, Q and m are as defined in the specification. A process for the preparation of the compound of formula (I) is also provided. A polymer of formula (PA), and preparation process and use thereof are further provided. A polymer of formula (PI), and preparation process and use thereof are also provided.Type: GrantFiled: September 14, 2012Date of Patent: July 29, 2014Assignees: Chang Chun Plastics Co., Ltd., National Chung Hsing UniversityInventors: Ching-Hsuan Lin, Tsung Li Lin, Yu-Ting Fang, Kuen-Yuan Hwang, An-Pang Tu
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Patent number: 8791230Abstract: A method for reducing colored foreign substances in a water absorbent resin by a convenient and simple technique in the production of a water absorbent resin, without requiring any modification of raw materials or high capital investment, is provided. The method for producing a particulate water absorbent resin includes a step of polymerizing an aqueous solution of an unsaturated monomer; and a step of drying a particulate water-containing gel-like cross-linked polymer having a solids concentration of 30% by weight or greater that is obtainable in a gel grain refining step during polymerization or after polymerization, with one or more apparatuses for aerating a water absorbent resin with a high temperature gas stream being installed in the drying step and/or in at least one of the subsequent steps, while in the aerating apparatus, the high temperature gas stream is passed through a filter and then is reused in the same step as the step where the aerating apparatus is installed, or in a different step.Type: GrantFiled: June 8, 2011Date of Patent: July 29, 2014Assignee: Nippon Shokubai Co., Ltd.Inventors: Satoshi Matsumoto, Syuji Kanzaki, Kazumasa Konishi
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Patent number: 8791231Abstract: Disclosed herein are compounds useful in the preparation of non-natural amino acids and polypeptides that include at least one non-natural amino acid, and methods for making such non-natural amino acids and polypeptides. The non-natural amino acids, by themselves or as a part of a polypeptide, can include a wide range of possible functionalities, but typical have at least one oxime, carbonyl, dicarbonyl, and/or hydroxylamine group. Also disclosed herein are compounds useful in the preparation of non-natural amino acid polypeptides that are further modified post-translationally, methods for effecting such modifications, and methods for purifying such resultant polypeptides. Typically, the modified non-natural amino acid polypeptides include at least one oxime, carbonyl, dicarbonyl, and/or hydroxylamine group. Further disclosed are methods for using such non-natural amino acid polypeptides and modified non-natural amino acid polypeptides, including therapeutic, diagnostic, and other biotechnology uses.Type: GrantFiled: January 13, 2011Date of Patent: July 29, 2014Assignee: Ambrx, Inc.Inventors: Zhenwei Miao, Junjie Liu, Thea Norman, Russell Driver
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Patent number: 8791232Abstract: An amino acid sequence is described. The amino acid may comprise a signal sequence that is SEQ ID NO. 1a (or a variant or homologue or derivative or fragment thereof) that is expressed as a fusion protein that comprises a protein of interest. The signal sequence directs secretion of the protein of interest. The protein of interest may be a heterologous protein. Secretion of the fusion protein aids purification.Type: GrantFiled: October 29, 2010Date of Patent: July 29, 2014Assignee: Dupont Nutrition Biosciences APSInventors: Patrick Maria Franciscus Derkx, Harm Mulder, Igor Nikolaev
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Patent number: 8791233Abstract: The present invention provides maspin-related compositions and methods of use thereof. In particular, the present invention provides maspin-related compositions, and methods or use thereof, for the promotion of cell adhesion.Type: GrantFiled: May 23, 2012Date of Patent: July 29, 2014Assignee: Northwestern UniversityInventor: Ming Zhang
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Patent number: 8791234Abstract: Peptide ligands for transporting therapeutic agents across the intestinal epithelial barrier that ordinarily are inadequately absorbed and must be delivered by alternative means, which contain an isolated amino acid sequence wherein at least one pair of amino acids are of an opposite charge and the pair members are separated by a spacer of 1-12 amino acid residues including at least one hydrophobic amino acid, and wherein the length of the amino acid sequence is greater than 5 and less than 20 amino acids. Pharmaceutical compositions for gastro-intestinal delivery and methods for the gastrointestinal delivery of poorly absorbed therapeutic agents are also disclosed.Type: GrantFiled: October 14, 2011Date of Patent: July 29, 2014Assignee: Rutgers, The State University of New JerseyInventors: Patrick J. Sinko, Xiaoping Zhang, Zoltan Szekely
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Patent number: 8791235Abstract: The present invention relates to compounds of Formula I, IA, II, HA, III, or IHA and their pharmaceutical uses. Particular aspects of the invention relate to the use of those compounds for the selective inhibition of one or more caspases. Also described are methods where the compounds of Formula I, IA, II, IIA, III, or IIIA are used in the prevention and/or treatment of various diseases and conditions in subjects, including caspase-mediated diseases such as sepsis, myocardial infarction, ischemic stroke, spinal cord injury (SCI), traumatic brain injury (TBI) and neurodegenerative disease (e.g. multiple sclerosis (MS) and Alzheimer's, Parkinson's, and Huntington's diseases).Type: GrantFiled: May 21, 2009Date of Patent: July 29, 2014Assignee: Novagenesis FoundationInventors: Jan-Eric Ahlfors, Khalid Mekouar
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Patent number: 8791236Abstract: A method for selectively acylating an amino group in a peptide or protein which has two or more reactive nucleophilic functional groups is described.Type: GrantFiled: January 28, 2014Date of Patent: July 29, 2014Assignee: Novo Nordisk A/SInventors: Caspar Christensen, Rune Severinsen, Anders Klarskov Petersen, Steffen Kidal, Claus U. Jessen, Peter Madsen, Henrik Valore, Tina Moeller Tagmose, Jan Lindy Soerensen
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Patent number: 8791237Abstract: The present invention provides recombinant peptides comprising a B cell receptor (BCR) or a fragment thereof, nucleotide molecules encoding same, and vaccines and vectors comprising same; and methods of treating, inducing an immune response against, inducing a regression of, and suppressing a formation of a lymphoma, comprising administering same. The present invention also provides methods of inducing a humoral immune response in an animal against an antigen, comprising administering to the animal a fusion peptide comprising an LLO protein or fragment thereof fused to the antigen.Type: GrantFiled: May 2, 2006Date of Patent: July 29, 2014Assignee: The Trustees of the University of PennsylvaniaInventors: Yvonne Paterson, Paul Neeson
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Patent number: 8791238Abstract: The invention relates to modified proteins of the superfamily of “ubiquitin-like proteins”, proteins that have a ubiquitin-like fold and fragments or fusion proteins thereof. As a result of said modification, the proteins have a binding affinity with respect to a predetermined binding partner that did not exist previously. The invention also relates to a method for the production and utilization of said proteins.Type: GrantFiled: February 29, 2008Date of Patent: July 29, 2014Assignee: Scil Proteins GmbHInventors: Markus Fiedler, Ulrike Fiedler, Rainer Rudolph
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Patent number: 8791239Abstract: Biofunctionalized fibers including a fiber platform and a histidine-tagged protein and, optionally, an antibody. Chitosan is a fiber useful as the fiber platform. The fiber platform may be treated with nickel or may be directly linked to the histidine-tagged protein e.g., histidine-tagged streptococcal IgG-binding protein, protein G, protein G3T, GFP or RFP. The resulting biofunctionalized fibers can be assembled into protein fiber assemblies by a variety of biofabrication methods. The fiber assemblies, e.g., in the form of woven fabrics, are useful for (i) antigen capture; (ii) immunoanalysis, and/or (iii) multiplexed analysis. In one fabrication, each fiber of a fiber assembly presents a specific antibody, and mixing and matching of fibers, for example by weaving of fabrics from various antibody-presenting fibers, allows for multiple antigens to be captured simultaneously for multiplexed analysis.Type: GrantFiled: April 7, 2009Date of Patent: July 29, 2014Assignee: University of Maryland, College ParkInventors: Xiao-Wen Shi, Hsuan-Chen Wu, Gregory F. Payne, William E. Bentley
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Patent number: 8791240Abstract: The present invention provides an auto-developing and regularly-weighted protein molecular weight marker kit, comprising: (a) a plurality of recombinant proteins having formula (I), (B)m-A-(C)n??(I), wherein A is a polypeptide of SEQ ID NO: 1, B and C are independently any mutually identical or different polypeptides with the value of molecular weight being a multiple of 5, and m and n is independently 0 or any integer larger than 0; and (b) one or more solvents for stabilizing the recombinant proteins. The present invention also provides a method for preparing the auto-developing and regularly-weighted protein molecular weight marker kit.Type: GrantFiled: February 22, 2012Date of Patent: July 29, 2014Assignee: Kaohsiung Medical UniversityInventors: Tian-Lu Cheng, Chiu-Min Cheng