Ethylenic Reactant Contains Nitrogen Heterocycle, E.g., Pyridine, Diazines, Etc. Patents (Class 525/279)
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Patent number: 11104830Abstract: The invention relates to an aqueous polymer dispersion comprising: a) an aqueous polymer dispersion comprising grafted rubber polymeric particles from rubber polymer being selected from natural or synthetic rubber, b) an aqueous polymer dispersion with polymeric particles of a second polymer comprising monomeric units derived front a monomeric composition b) comprising: b1) a (meth)acrylate of a linear or branched alcohol in C4 to C10 or a mixture of such (meth)acrylates, said (meth)acrylate having Tgb1 lower than ?30° C., b2) optionally, at least one comonomer having Tgb2 higher than ?30° C., with said grafted rubber polymeric particles being grafted in an aqueous dispersion by a part of said monomeric composition b) as defined above. The invention covers a process of preparation of said dispersion, an adhesive composition comprising said dispersion, the use of said dispersion in pressure sensitive adhesives, and the resulting adhesive.Type: GrantFiled: December 2, 2015Date of Patent: August 31, 2021Assignee: Arkema FranceInventors: Mario Lugli, Umberto Amadei, Simona Ferretti, Luca Resta, Leo Mario Saija
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Patent number: 10766989Abstract: The invention pertains to a fluoroelastomer composition [composition (C)] comprising: —at least one fluoroelastomer [fluoroelastomer (A)]; —at least one basic compound [base (B)]; —at least one pyridinium-type salt [salt (P)] having at least two groups in ortho or para position to the quaternized nitrogen bearing a reactive hydrogen atom.Type: GrantFiled: May 3, 2016Date of Patent: September 8, 2020Assignee: SOLVAY SPECIALITY POLYMERS ITALY S.P.A.Inventors: Matteo Fantoni, Vito Tortelli, Cristiano Monzani, Stefano Bossolo, Marco Avataneo
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Patent number: 10639377Abstract: Because of the formation of disulfide bridges with mucus glycoproteins, the mucoadhesive properties of polymeric compounds can be significantly improved by the covalent attachment of thiol substructures to them. By the transformation of free thiol groups on such polymers in disulfides with mercaptonicotinamides or mercaptopyridoxins these thiol groups become comparatively more reactive resulting in significantly improved mucoadhesive properties. Furthermore, polymers exhibiting disulfide partial structures with mercaptonicotinamides or mercaptopyridoxins do not need to be protected against oxidation. In addition, they show comparatively higher permeation enhancing properties.Type: GrantFiled: February 12, 2015Date of Patent: May 5, 2020Assignees: THIOMATRIX FORSCHUNGS-UND BERATUNGS GMBH, CROMA PHARMA GMBHInventor: Johannes Leierer
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Patent number: 10556997Abstract: A cross-linked rubber product is obtained by cross-linking an acrylic elastomer composition containing an acrylic elastomer obtained by copolymerization of an acrylate and a cross-linking site monomer. The molar fraction of an oxygen atom (a) in the acrylic elastomer is 11.3 mol % or less, the molar fraction of a nitrogen atom (b) in the acrylic elastomer is 0.5 mol % or less, and a volume change is from ?3 to 6% when the cross-linked rubber product is dipped in distilled water at 80° C. for 200 hours.Type: GrantFiled: February 23, 2016Date of Patent: February 11, 2020Assignee: ZEON CORPORATIONInventors: Nobuyoshi Emori, Tomonori Ogawa, Takanori Arakawa
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Patent number: 10550203Abstract: A method for preparing a functionalized polymer, the method comprising the steps of preparing a reactive polymer and reacting the reactive polymer with a heterocyclic nitrile compound.Type: GrantFiled: July 18, 2018Date of Patent: February 4, 2020Assignee: Bridgestone CorporationInventors: Steven Luo, Ryouji Tanaka, Kouichirou Tani
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Patent number: 10280296Abstract: A process for producing a thermoplastic molding composition comprising: 10% to 40% by weight of a graft copolymer A comprising 50% to 70% by weight, based on A, of a graft base A1 formed from an elastomeric, crosslinked acrylic ester polymer and 30% to 50% by weight of a graft shell A2, 50% to 90% by weight of a hard matrix B formed from copolymers of styrene or ?-methylstyrene and acrylonitrile, 0% to 50% by weight of a further graft copolymer C, 0% to 15% by weight of additives D, wherein the reaction for preparation of the acrylic ester polymer A and/or the reaction for preparation of C is conducted in the presence of 0.01 to 4 times the molar amount of sodium carbonate, based on the sum total of the molar amount of initiator used in the preparation of the graft base and graft shell, leads to lower coagulate formation.Type: GrantFiled: March 26, 2015Date of Patent: May 7, 2019Assignee: INEOS STYROLUTION GROUP GMBHInventors: Philipp Boeckmann, Wolfgang Fischer, Hans-Juergen Hausser
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Patent number: 10253124Abstract: An object of the present invention is to provide an organic EO polymer having a desired Tg. The present invention provides a copolymer comprising (i) a cycloalkane methacrylate and 2-isocyanatoethyl methacrylate as monomers at an adjusted blending ratio and (ii) an electro-optic molecule (EO molecule) bound to the copolymer, thereby exhibiting a desired glass transition temperature (Tg).Type: GrantFiled: March 17, 2015Date of Patent: April 9, 2019Assignee: NATIONAL INSTITUTE OF INFORMATION AND COMMUNICATIONS TECHNOLOGYInventors: Akira Otomo, Isao Aoki, Toshiki Yamada, Hideki Miki
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Patent number: 10173925Abstract: The present invention provides substantially nonionic brush polymers having pendant polyether groups, preferably poly(alkylene glycol) groups, which polymers are useful as synthetic polymer substitutes for cellulose ethers in mortars and hydraulic binders. The brush polymers are preferably crosslinked, such as with ethylene glycol di(meth)acrylates.Type: GrantFiled: March 27, 2015Date of Patent: January 8, 2019Assignees: Dow Global Technologies LLC, Rohm and Haas CompanyInventors: Robert Baumann, Adam W. Freeman, Philip M. Imbesi, Marc Schmitz, Hongwei Shen, Wei-Wen Tsai, Sipei Zhang
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Patent number: 10128481Abstract: A lithium-based battery separator includes a porous polymer membrane having opposed surfaces. A porous carbon coating is formed on one of the opposed surfaces of the porous polymer membrane. Polycations are incorporated in the porous carbon coating, in the porous polymer membrane, or in both the porous carbon coating and the porous polymer membrane.Type: GrantFiled: February 9, 2015Date of Patent: November 13, 2018Assignee: GM GLOBAL TECHNOLOGY OPERATIONS LLCInventors: Qiangfeng Xiao, Anne M. Dailly, Li Yang, Zhongyi Liu, Mei Cai
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Patent number: 10047220Abstract: A process for preparing a thermoplastic polymer composition or a thermoplastic polymer blend, comprising: —from 20 to 80% by weight of at least one water-moist elastomer component A containing up to 40%, preferably up to 30% by weight of residual water, —from 20 to 80% by weight of at least one thermoplastic polymer B, —from 0 to 40% by weight of at least one further polymer C, and —from 0 to 60% by weight of additive(s) D, by mixing the elastomer component A with the thermoplastic polymer B and, if present, the further polymer C and, if present, the additive(s) D in an extruder, comprising the steps of precipitating the elastomer component A, and mechanical dewatering of the elastomer component A leads to improved salt-free products.Type: GrantFiled: July 1, 2014Date of Patent: August 14, 2018Assignee: INEOS STYROLUTION GROUP GMBHInventors: Norbert Niessner, Brian Banaszak, Rudy Verstraeten, Gisbert Michels, Wolfgang Fischer, Christian Ruthard, Ulrich Jansen
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Patent number: 10011683Abstract: Disclosed herein are methods for the productions of linear polyethyleneimine using living anionic polymerization of appropriately functionalized aziridine monomers.Type: GrantFiled: January 13, 2017Date of Patent: July 3, 2018Assignee: THE BOARD OF TRUSTEES OF THE UNIVERSITY OF ALABAMAInventors: Paul A. Rupar, Louis Reisman, Pierre Canisius Mbarushimana
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Patent number: 9803034Abstract: This invention relates to a highly functional graft copolymer and a method of preparing the same, and more particularly, to a highly functional graft copolymer including a main chain of a highly elastic ethylene-based terpolymer including, at a predetermined molar ratio, an ethylene unit, an ?-olefin unit having 6 to 12 carbon atoms, and at least one functional unit selected from the group consisting of divinylbenzene and p-methylstyrene, and a side chain of a polar polymer for imparting functionality, and to a method of preparing the highly functional graft copolymer by performing anionic polymerization after catalytic polymerization using a metallocene catalyst.Type: GrantFiled: December 30, 2011Date of Patent: October 31, 2017Assignee: KOREA INSTITUTE OF INDUSTRIAL TECHNOLOGYInventors: Dong Hyun Kim, Joon Chul Lee, Hyun Ki Kim, Tae Wan Kim
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Patent number: 9469710Abstract: A method for preparing a functionalized polymer, the method comprising the steps of: (i) polymerizing monomer with an anionic initiator to form a reactive polymer; and (ii) reacting the reactive polymer with a nitrile compound containing a protected amino group, where the protected amino group is directly attached to a moiety selected from the group consisting of acyclic moieties, heterocyclic moieties, and non-aromatic cyclic moieties.Type: GrantFiled: January 28, 2015Date of Patent: October 18, 2016Assignee: Bridgestone CorporationInventors: Steven Luo, Eiju Suzuki, Dennis R. Brumbaugh
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Patent number: 9469741Abstract: A method for preparing a functionalized polymer, the method comprising the steps of preparing a reactive polymer and reacting the reactive polymer with a heterocyclic nitrile compound.Type: GrantFiled: June 3, 2015Date of Patent: October 18, 2016Assignee: Bridgestone CorporationInventors: Steven Luo, Ryouji Tanaka, Kouichirou Tani
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Patent number: 9403978Abstract: A thermoplastic resin composition comprises (A) about 30 to about 98 wt % of a polycarbonate resin, (B) about 1 to about 50 wt % of a rubber modified acrylic-based graft copolymer, and (C) about 1 to about 69 wt % of a branched copolymer including silicon-based compound. A molded article can be made using the same.Type: GrantFiled: December 5, 2013Date of Patent: August 2, 2016Assignee: Cheil Industries Inc.Inventors: Kee-Hae Kwon, In-Chol Kim, Bo-Eun Kim, Joo-Hyun Jang, Chang-Min Hong
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Patent number: 9267056Abstract: An ink composition includes a graft copolymer including a repeating unit having a partial structure represented by Formula (1) described below and a repeating unit having a hydrophilic group in which a graft chain includes the repeating unit and water.Type: GrantFiled: January 9, 2015Date of Patent: February 23, 2016Assignee: FUJIFILM CorporationInventor: Norihide Shimohara
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Molecularly imprinted polymers selective for tobacco specific nitrosamines and methods of using same
Patent number: 9169341Abstract: A class of molecularly imprinted polymers that specifically recognizes and binds to TSNAs are useful, for example, in analysis and separation of TSNAs from biological fluids. Such polymers are also useful in methods of treating and manufacturing tobacco products and materials.Type: GrantFiled: October 20, 2014Date of Patent: October 27, 2015Assignee: British American Tobacco (Investments) LimitedInventors: Anthony Rees, Johan Billing, Ecevit Yilmaz -
Patent number: 9133290Abstract: A macromolecule includes at least one polymer chain with at least one functionality. The polymer can include unsaturated mer units and can be provided via anionic and pseudo-living polymerization techniques. In either technique, the functionality can include at least one 5- or 6-membered ring which includes a secondary amine group and at least one additional heteroatom; in the latter technique, the functionality can include a hydrazone radical. Such polymers can be used to provide compositions that also include particulate fillers, such compositions being useful for the production of vulcanizates.Type: GrantFiled: March 30, 2009Date of Patent: September 15, 2015Assignee: Brigdestone CorporationInventors: Yuan-Yong Yan, Steven Luo, Mark T. Arigo
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Patent number: 9023931Abstract: Oxidation-sensitive, low-peroxide polymer contained in a sealed, protective-gas-filled packaging form, comprising, per kilogram of polymer solid, at least one inorganic phosphorus compound in amounts such that the total phosphorus content is 2*10?5 to 0.02 mol, and methods for stabilizing oxidation-sensitive polymer against peroxide formation, wherein, during or after the polymerization, at least one inorganic phosphorus compound is added in one or more portions in amounts such that the total phosphorus content per kilogram of polymer solid content of the finished polymer is 2*10?5 to 0.02 mol, and the polymer treated in such a way is placed into a protective-gas filled, sealed packaging form, and also use of these polymers.Type: GrantFiled: April 11, 2012Date of Patent: May 5, 2015Assignee: BASF SEInventor: Bernhard Fussnegger
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Publication number: 20150093626Abstract: A lithium ion battery separator includes a porous film of a polymeric chelating agent. The polymeric chelating agent includes a poly(undecylenyl-macrocycle), where the macrocycle is a chelating agent. A positive electrode includes a structure and a coating formed on a surface of the structure. The structure includes a lithium transition metal based active material, a binder, and a conductive carbon; and the coating includes a poly(undecylenyl-macrocycle), where the macrocycle is a chelating agent. The separator and/or positive electrode are suitable for use in a lithium ion battery.Type: ApplicationFiled: September 22, 2014Publication date: April 2, 2015Inventors: Timothy J. Fuller, Ion C. Halalay, James Mitchell, Lijun Zou
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Patent number: 8980392Abstract: The use of a functionalized organosilicon compound as a coupling agent between an inorganic filler and an elastomer in an elastomer composition including an isoprene elastomer and a reinforcing inorganic filler is disclosed. The compound is selected among functionalized organosilicon compounds including at least one double bond C?C or C?N, and not including any C?C—C?O bonds or N?N bonds, and reacting with the isoprene units according to an electrocyclic reaction, in particular according to a standard cycloaddition reaction [2+1], [2+2], [3+2] or a Diels-Alder reaction [4+2] or an ene-synthesis reaction other than an ene-synthesis reaction between an isoprene unit and a C?C—C?O or N?N function. Also described, are elastomer composition(s) obtained and items manufactured using such compositions.Type: GrantFiled: June 2, 2010Date of Patent: March 17, 2015Assignee: Rhodia OperationsInventors: Laurent Guy, Virginie Pevere, Thierry Vidal
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Molecularly Imprinted Polymers Selective for Tobacco Specific Nitrosamines and Methods of Using Same
Publication number: 20150038648Abstract: A class of molecularly imprinted polymers that specifically recognizes and binds to TSNAs are useful, for example, in analysis and separation of TSNAs from biological fluids. Such polymers are also useful in methods of treating and manufacturing tobacco products and materials.Type: ApplicationFiled: October 20, 2014Publication date: February 5, 2015Applicant: BRITISH AMERICAN TOBACCO (INVESTMENTS) LIMITEDInventors: Anthony REES, Johan BILLING, Ecevit YILMAZ -
Publication number: 20150005440Abstract: A method for producing a conjugated diene-based polymer is provided, in which compounds of formulas (2) and (3) and a conjugated diene compound are polymerized using a compound of formula (1), and then a compound containing a nitrogen atom and/or a silicon atom is reacted with an active end of the polymer formed via the polymerization, R11 represents a hydrocarbylene group, R12 and R13 each represent an optionally substituted hydrocarbyl group or a trihydrocarbylsilyl group, or R12 is bonded to R3 and the group in which R12 is bonded to R13 represents a hydrocarbylene group optionally having a nitrogen and/or oxygen atom, —Si(R14)2—(CH2)x—Si(R14)2—, or —Si(R15)2—(CH2)y?, and M represents an alkali metal atom, E2-A2??(2) E3-A3??(3) E2 and E3 each represent a hydrocarbyl group having a polymerizable carbon-carbon double bond, A2 represents a substituted amino group or a nitrogen-containing heterocyclic group, and A3 represents a substituted silyl group.Type: ApplicationFiled: January 31, 2013Publication date: January 1, 2015Applicant: Sumitomo Chemical Company, LimitedInventor: Mana Fujii
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Patent number: 8921489Abstract: Modified polyolefins with isotactic structural elements and processes for preparation thereof are provided. The modified poyolefins are useful as an adhesive or as a constituent of an adhesive.Type: GrantFiled: July 6, 2010Date of Patent: December 30, 2014Assignee: Evonik Degussa GmbHInventors: Hinnerk Gordon Becker, Lutz Mindach, Holger Kautz, Miriam Ammer
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Patent number: 8912287Abstract: Disclosed are a method for producing a polymer by a polymerization of a mixture at a temperature of 210° C. or lower, wherein the mixture comprises 0.01 to 35 mol % of a monomer or a polymer thereof which has a piperidine skeleton represented by formula (1), and a molded body thereof. R1 represents a hydrogen atom or a methyl group, X represents an oxygen atom, an imino group, or a specific oxygen atom containing a hydrocarbon group, and R2 and R3 represent a hydrogen atom, a linear alkyl group with C1 to C8, a branched alkyl group with C1 to C8, an alicyclic hydrocarbon with C6 to C8, or an aryl group, wherein R2 and R3 may also form a cyclic structure.Type: GrantFiled: December 1, 2010Date of Patent: December 16, 2014Assignee: Mitsubishi Rayon Co., Ltd.Inventors: Fuminori Nakaya, Tetsuya Noda, Keiichi Sakashita
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Patent number: 8906343Abstract: A PAA nanoparticle containing a covalently linked fluorescent dye and a post-loaded tetrapyrrolic photosensitizer.Type: GrantFiled: August 3, 2012Date of Patent: December 9, 2014Assignees: Health Research, Inc., The Research Foundation of State University of New York, Regents of the University of MichiganInventors: Ravindra K. Pandey, Raoul Kopelman, Anurag Gupta, Munawwar Sajjad
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Molecularly imprinted polymers selective for tobacco specific nitrosamines and methods of using same
Patent number: 8889795Abstract: A class of molecularly imprinted polymers that specifically recognizes and binds to TSNAs are useful, for example, in analysis and separation of TSNAs from biological fluids. Such polymers are also useful in methods of treating and manufacturing tobacco products and materials.Type: GrantFiled: February 7, 2014Date of Patent: November 18, 2014Assignee: British American Tobacco (Investments) LimitedInventors: Anthony Rees, Johan Billing, Ecevit Yilmaz -
Publication number: 20140309313Abstract: A polymer matrix is provided comprising an amine-containing polyampholyte covalently crosslinked with an electrophilic polymer to yield an immunocompatible polymer matrix. A hydrogel system incorporating the polymer matrix is also provided.Type: ApplicationFiled: April 14, 2014Publication date: October 16, 2014Applicant: McMaster UniversityInventors: Harald Stover, Nicholas Burke
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Patent number: 8841384Abstract: Material composed of a polyazacycloalkane grafted on polypropylene fibres. Process for the preparation of this material. Process for removing metal cations present in a liquid by bringing this liquid into contact with the said material.Type: GrantFiled: January 14, 2008Date of Patent: September 23, 2014Assignee: Commissariat a l'Energie AtomiqueInventors: Frédéric Rascalou, Franck Denat, Roger Guilard, Jean-Louis Babouhot, Hervé Chollet, Michel Meyer
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Patent number: 8802782Abstract: Modified polyolefins with syndiotactic structural elements and a processes for preparation thereof are provided. The modified polyolefins are useful as an adhesive or as a constituent of adhesives.Type: GrantFiled: July 6, 2010Date of Patent: August 12, 2014Assignee: Evonik Degussa GmbHInventors: Hinnerk Gordon Becker, Lutz Mindach, Holger Kautz, Miriam Ammer
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Patent number: 8795647Abstract: The invention relates to the field of polymers and olefin polymerization, and more specifically olefin metathesis polymerization. The invention provides regioregular alternating polymers and methods of synthesizing such polymers.Type: GrantFiled: August 20, 2009Date of Patent: August 5, 2014Assignee: The Research Foundation for The State University of New YorkInventors: Nicole Sampson, Kathlyn Parker, Airong Song
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Publication number: 20140190893Abstract: The present invention relates to an ampholytic polymeric system obtainable by a process comprising the copolymerisation of (i) a monomer according to Formula (1), (ii) an ethylenically unsaturated cationic monomer and (iii) a (co)polymer comprising an ethylenically unsaturated anionic monomer which comprises a sulfonate group: (1) wherein X is O or NR2, R1 and R2 are independently selected from the group consisting of hydrogen and C1-C6 alkyl groups or wherein R1 and R2 form together a (CR1R2)n- chain, wherein n is 3 to 12, and wherein R3 is independently selected from the group consisting of hydrogen and CH3. The present invention further relates to the use of ampholytic polymeric system in separation processes.Type: ApplicationFiled: May 4, 2012Publication date: July 10, 2014Inventors: Johannes Petrus Aldegonda Custers, Leonard Franciscus Sophia Stemkens, Dirk Theodorus Andreas Van Asseldonk
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Patent number: 8773745Abstract: The present invention relates to an electrochromic polymer compound composed of a hyperbranched polymer having electrochromic characteristics derived from a quaternary pyridinium salt, a terephthalic acid diester or a biphenyl-4,4?-diester structure, and a varnish, a thin film structure and an electrochromic device that are obtained by the polymer compound. The electrochromic material has high response speed, high coloring efficiency, and excellent repetition stability and can be used for a long time, and has excellent solubility in various solvents.Type: GrantFiled: May 7, 2009Date of Patent: July 8, 2014Assignees: Kyushu University, Nissan Chemical Industries, Ltd.Inventors: Toshihiko Nagamura, Masaaki Ozawa, Akihiro Tanaka, Osamu Hirata, Keisuke Odoi, Takeshi Sakano
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Molecularly Imprinted Polymers Selective for Tobacco Specific Nitrosamines and Methods of Using Same
Publication number: 20140155555Abstract: A class of molecularly imprinted polymers that specifically recognizes and binds to TSNAs are useful, for example, in analysis and separation of TSNAs from biological fluids. Such polymers are also useful in methods of treating and manufacturing tobacco products and materials.Type: ApplicationFiled: February 7, 2014Publication date: June 5, 2014Applicant: British American Tobacco (Investments) LimitedInventors: Anthony Rees, Johan Billing, Ecevit Yilmaz -
Patent number: 8697809Abstract: The invention provides a novel block polymer applicable to a light-emitting device. The block polymer has an electron-transporting block and a hole-transporting block, wherein the main chain backbone of the block polymer is polyacetylene.Type: GrantFiled: December 19, 2008Date of Patent: April 15, 2014Assignee: Canon Kabushiki KaishaInventors: Takeyuki Sone, Otto Albrecht, Koji Yano
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Patent number: 8664339Abstract: Disclosed are new organic semiconducting polymers. The polymers disclosed herein can exhibit high carrier mobility and/or efficient light absorption/emission characteristics, and can possess certain processing advantages such as solution-processability and/or good stability at ambient conditions.Type: GrantFiled: November 6, 2009Date of Patent: March 4, 2014Assignees: Polyera Corporation, BASF SEInventor: Antonio Facchetti
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Patent number: 8648148Abstract: Disclosed is a mass polymerized rubber-modified monovinylidene aromatic copolymer composition with an excellent balance of aesthetic, physical and mechanical properties, in particular good impact with low consistent gloss across an injection molded textured part, and a method for preparing such a composition.Type: GrantFiled: October 5, 2006Date of Patent: February 11, 2014Assignee: Styron Europe GmbHInventors: Nigel A. Shields, Dominique Maes, Mary Ann Jones, Thomas D. Traugott
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Publication number: 20130344159Abstract: The present invention relates to a polymer obtained from the polymerization of: (i) at least one monomer of formula (I) (CH2?CR1)CO—K (1) wherein: K represents O—Z or NH—Z, Z representing (CR2R3)m-CH3, (CH2—CH2—O)m-H, (CH2—CH2—O)m-CH3, (CH2)m-NR4R5 with m representing an integer from 1 to 30; R1, R2, R3, R4 and R5 independently represent H or a C1-C6 alkyl; (ii) at least between 0.1 and 50% mol, advantageously between 1 and 30% mol, more advantageously between 1 and 20 mol % of a cyclic monomer having a exomethylene group of formula (II) wherein: R6, R7, R8 and R9 represent independently H or a C5-C7 aryl group or R6 and R9 are absent and R7 and R8 form together with the carbon atom on which they are bonded a C5-C7 aryl group; i and j represent independently an integer chosen between 0 and 2; X represents either O or X is not present and in this latter case, CR6R7 and CR8R9 are linked via a single bond C—C and (iii) at least one bio-resorbable block copolymer cross-linker.Type: ApplicationFiled: March 9, 2012Publication date: December 26, 2013Applicants: OCCLUGEL, UNIVERSITE PARIS DIDEROT - PARIS 7, ASSISTANCE PUBLIQUE-HOPITAUX DE PARIS, CENTRE NATIONAL DE LA RECHERCHE SCIENTIFIQUEInventors: Laurence Moine, Alexandre Laurent, Michel Wassef, Laurent Bedouet, Stephanie Louguet, Valentin Verret, Emeline Servais
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Patent number: 8592540Abstract: There is disclosed a fluorine-containing polymer compound comprising a repeating unit (a) of the following general formula (2) and having a weight-average molecular weight of 1000 to 1000000 where R1 represents a polymerizable double bond-containing group; R2 represents a fluorine atom or a fluorine-containing alkyl group; R3 represents a hydrogen atom, an acid labile group, a cross-linking site or the other monovalent organic group; and W1 represents a linking moiety. When the fluorine-containing polymer compound is used in a resist compound for pattern formation by high energy radiation of 300 nm or less wavelength or electron beam radiation, it is possible to form a resist pattern with a good rectangular profile.Type: GrantFiled: December 15, 2009Date of Patent: November 26, 2013Assignee: Central Glass Company, LimitedInventors: Kazunori Mori, Yuji Hagiwara, Yoshimi Isono, Satoru Narizuka, Kazuhiko Maeda
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Publication number: 20130296493Abstract: The present invention provides a modified natural rubber that offers higher efficiency of graft polymerization or attachment of a polar group-containing compounds, and that possesses excellent low loss factor, wear resistance and fracture resistance when used as a rubber composition, a rubber composition using the modified natural rubber and a tire using the rubber composition. In the present invention, a polar group-containing compound is graft polymerized or attached under mechanical shear force to a natural rubber raw material having a nitrogen content of 0.4 mass % or less.Type: ApplicationFiled: May 1, 2013Publication date: November 7, 2013Applicant: BRIDGESTONE CORPORATIONInventors: Taku YAMAMOTO, Haruki Minojima, Takeshi Kasai
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Patent number: 8563657Abstract: The present invention relates to (i) novel fluoroionic compounds capable of dispersing particulate filler compositions into a fluoropolymer; (ii) novel particulate compositions in which particulates are surface-functionalized with a fluoroionic compound; (iii) fluoropolymer composite materials containing the surface-functionalized particulates of (ii) incorporated into a fluoropolymer; (iv) crosslinked versions of (iii); v) methods for producing the crosslinked material of (iv); and (vi) articles of manufacture containing the compositions (iii) and (iv).Type: GrantFiled: April 6, 2009Date of Patent: October 22, 2013Assignee: The Research Foundation of State University of New YorkInventors: Benjamin S. Hsiao, Benjamin Chu, Jie Wei, Hongyang Ma, Feng Zuo
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Patent number: 8530582Abstract: The present invention relates to modified polyolefins with atactic structural elements, to processes for preparation thereof and to the use thereof, especially as an adhesive or as a constituent of adhesives.Type: GrantFiled: July 6, 2010Date of Patent: September 10, 2013Assignee: Evonik Degussa GmbHInventors: Hinnerk Gordon Becker, Lutz Mindach, Holger Kautz, Miriam Ammer
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Publication number: 20130195758Abstract: A PAA nanoparticle containing a covalently linked fluorescent dye and a post-loaded tetrapyrrolic photosensitizer.Type: ApplicationFiled: August 3, 2012Publication date: August 1, 2013Applicants: HEALTH RESEARCH, INC., Regents of the University of Michigan, The Research Foundation of State University of New YorkInventors: Ravindra K. Pandey, Raoul Kopelman, Anurag Gupta, Munawwar Sajjad
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Patent number: 8466234Abstract: The present invention relates to the production of amphiphilic copolymer networks, or co-networks, and to methods for preparing amphiphilic co-networks. Furthermore, the present invention relates to products and/or films made from the amphiphilic co-networks produced in accordance with the synthesis methods of the present invention. In one embodiment, the present invention is related to crosslinkable and/or polymerizable compositions that can be utilized to form amphiphilic co-networks, where such compositions are block copolymer compositions that are formed from the combination of at least one hydrophilic segment, at least one hydrophobic segment, and at least one crosslinkable and/or polymerizable segment. In yet another embodiment, the present invention relates to amphiphilic co-networks that are optically clear and highly oxyphilic.Type: GrantFiled: April 4, 2008Date of Patent: June 18, 2013Assignee: The University of AkronInventors: Joseph P. Kennedy, Radhakrishnan Karunakaran
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Publication number: 20130150481Abstract: Disclosed herein are compositions that include at least one reactive monomer that includes a lactam functional group and an ester functional group represented by formula (1): and a reactive co-solvent having a carbon-carbon double bond. The reactive monomer is one that is capable of reacting with the co-solvent to form a polymer. The compositions may be an ink composition including curable ink compositions.Type: ApplicationFiled: December 22, 2010Publication date: June 13, 2013Inventors: David K. Hood, Osama M. Musa
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Publication number: 20130066016Abstract: A method for preparing a functionalized polymer, the method comprising the steps of preparing a reactive polymer and reacting the reactive polymer with a heterocyclic nitrile compound.Type: ApplicationFiled: November 6, 2012Publication date: March 14, 2013Applicant: BRIDGESTONE CORPORATIONInventor: Bridgestone Corporation
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Publication number: 20130053508Abstract: A pre-adhesive composition is described comprising an acid-functional (meth)acrylate copolymer and an acylaziridine crosslinking agent, which when crosslinked provides a pressure-sensitive adhesive and pressure-sensitive adhesive articles.Type: ApplicationFiled: October 31, 2012Publication date: February 28, 2013Applicant: 3M INNOVATIVE PROPERTIES COMPANYInventor: 3M INNOVATIVE PROPERTIES COMPANY
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Publication number: 20130029255Abstract: Provided is an actinic ray-sensitive or radiation-sensitive resin composition containing a compound (A) which contains at least one phenolic hydroxyl group and at least one group where a hydrogen atom in a phenolic hydroxyl group is substituted by a group represented by the following General Formula (1).Type: ApplicationFiled: July 26, 2012Publication date: January 31, 2013Applicant: FUJIFILM CORPORATIONInventors: Takeshi INASAKI, Tomotaka TSUCHIMURA
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Patent number: 8362156Abstract: A method for preparing a functionalized polymer, the method comprising the steps of preparing a reactive polymer and reacting the reactive polymer with a heterocyclic nitrile compound.Type: GrantFiled: October 14, 2008Date of Patent: January 29, 2013Assignee: Bridgestone CorporationInventors: Steven Luo, Ryouji Tanaka, Kouichirou Tani
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Patent number: 8362153Abstract: The present invention provides for polyisobutenyl sulfonates, methods for preparing them, and composition employing them; wherein said polyisobutenyl sulfonates have improved low temperature and high temperature viscometric properties. The polyisobutenyl sulfonates are prepared by sulfonating polyisobutene and reacting the polyisobutenyl sulfonate with an alkali metal or alkaline earth metal, wherein the polyisobutene is characterized by having at least 90 mole percent methyl-vinylidene, a number average molecular weight of about 350 to 5,000, and a ratio of weight average molecular weight to number average molecular weight Mw/Mn of from about 1.01 to about 1.4.Type: GrantFiled: December 15, 2006Date of Patent: January 29, 2013Assignee: Chevron Oronite Company LLCInventor: James J. Harrison