Contains A Single 1,2-epoxy Group Patents (Class 528/366)
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Patent number: 8993687Abstract: There is provided a method for production of a high-purity biodegradable polyoxyethylene derivative on an industrial scale using a polyoxyethylene compound containing polylactic acid at the terminal thereof. A biodegradable polyoxyethylene compound represented by formula (1) and a compound represented by formula (I) are caused to react with each other at 60° C. to 120° C. using toluene as a solvent in the presence of sodium acetate to obtain a biodegradable polyoxyethylene derivative represented by formula (2).Type: GrantFiled: March 12, 2014Date of Patent: March 31, 2015Assignee: NOF CorporationInventors: Kosuke Nishiguchi, Tsuyoshi Takehana, Yuji Yamamoto
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Patent number: 8957163Abstract: Provided is a polymer-based detergent builder which is capable of effectively suppressing deposition of a surfactant, and effectively preventing soil re-deposition, even in washing using high hardness water.Type: GrantFiled: March 23, 2007Date of Patent: February 17, 2015Assignee: Nippon Shokubai Co., Ltd.Inventors: Atsuro Yoneda, Akiko Hemmi
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Publication number: 20140329987Abstract: The present invention relates to a method for producing polyetherester carbonate polyols by means of catalytic addition of carbon dioxide, alkylene oxides and cyclic anhydrides to H-functional starter compounds in the presence of double metal cyanide (DMC) catalysts.Type: ApplicationFiled: December 10, 2012Publication date: November 6, 2014Inventors: Christoph Gürtler, Thomas Ernst Müller, Anthony Kermagoret, Yvonne Dienes, Julien Barruet, Aurel Wolf, Stefan Grasser
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Patent number: 8871874Abstract: Disclosed is a thermoplastic melt-mixed composition including: a) a polyamide resin; b) a poly(amino acid)-polyol compound provided by reacting: b1) one or more amino acids selected from the group consisting of primary amino acids and secondary amino acids and combinations of these; the amino acid having no more than one hydroxyl group; and b2) one or more polyepoxy compound comprising at least two or more epoxy groups; the poly(amino acid)-polyol compound having a range of at least 10 percent conversion of epoxy equivalents of component (b1) up to, but excluding, the gel point of the components b1) and b2) and c) reinforcing agent; and, optionally, d) polymeric toughener; and f) further additives. Processes for making the composition are also disclosed.Type: GrantFiled: June 12, 2013Date of Patent: October 28, 2014Assignee: E I du Pont de Nemours and CompanyInventors: Yuefei Tao, Lech Wilczek, Jennifer Leigh Thompson
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Publication number: 20140248502Abstract: The invention relates to compositions of hydroxyl functional acrylic resins (acrylic polyols) comprising a mixture of ?,?-branched alkane carboxylic glycidyl esters derived from butene oligomers characterized in that the sum of the concentration of the blocked and of the highly branched isomers is maximum 55%, preferably below 40%, and most preferably below 30% weight on total composition.Type: ApplicationFiled: October 16, 2012Publication date: September 4, 2014Applicant: Momentive Specialty Chemicals Inc.Inventors: Denis Heymans, Christophe Steinbrecher, Cédrlc Le fevere de ten hove
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Publication number: 20140194575Abstract: A crosslinkable bioplasticizer is disclosed, a mixture of an epoxy-functional bio-derived plasticizer and an aromatic dianhydride. When heated, the mixture crosslinks, which can be accelerated by the addition of a Lewis Acid metal catalyst. The crosslinked bioplasticizer can be melt compounded into a thermoplastic resin or can be formed in situ in the thermoplastic resin. The crosslinking of the bioplasticizer can reduce blooming of the bioplasticizer to the surface of a plastic article made by extrusion, molding, calendering, or thermoforming techniques.Type: ApplicationFiled: July 25, 2012Publication date: July 10, 2014Applicant: PolyOne CorporationInventors: Roger W. Avakian, Ling Hu
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Patent number: 8680211Abstract: A process for preparing a hybrid polyester-polyether polyol comprises contacting a carboxyl group-containing component and an epoxide, optionally in the presence of one or more of a double metal cyanide catalyst, a superacid catalyst, a metal salt of a superacid catalyst and/or a tertiary amine catalyst, under conditions such that a hybrid polyester-polyether polyol is formed. The hybrid polyester-polyether polyol offers the advantages of both ester and ether functionalities when used in a polyurethane formulation, thus enhancing physical properties. The process results in products having narrow polydispersity, a low acid number and unsaturation, and reduced byproduct formation, particularly when the double metal cyanide catalyst is employed.Type: GrantFiled: April 21, 2011Date of Patent: March 25, 2014Assignee: Dow Global Technologies LLCInventors: Pavel L. Shutov, Jorge Jimenez, Hanno R. Van der Wal, Francois M. Casati
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Patent number: 8557929Abstract: A method for producing a biodegradable polyoxyalkylene derivative, includes: reacting a biodegradable polyoxyalkylene compound represented by the formula (1) as defined herein with a compound represented by one of the formulae (I) to (IV) as defined herein in a presence of an alkaline solid salt, the biodegradable polyoxyalkylene derivative being represented by the formula (2) as defined herein.Type: GrantFiled: September 28, 2007Date of Patent: October 15, 2013Assignee: NOF CorporationInventors: Kazuhiro Kubo, Shigeru Kitano, Chika Ito
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Publication number: 20130165623Abstract: Copolymers of propylene oxide and carbon dioxide and homopolymers of propylene oxide are made using two dimensional double metal cyanide complexes having the formula Co[M(CN)4] or hydrated or partially dehydrated form thereof. There is no propylene carbonate by product in the copolymerization.Type: ApplicationFiled: December 3, 2012Publication date: June 27, 2013Applicant: Comell Research Foundation, Inc.Inventor: Comell Research Foundation, Inc.
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Publication number: 20130102755Abstract: Product containing epichlorohydrin and at least one alkyl glycidyl ether in an amount of less than 0.1 g/kg of product. Use of the product containing epichlorohydrin in the manufacture of epoxy resins, of glycidyl ethers, of glycidyl esters, of glycidyl amides, of glycidyl imides, of products that will be used in food and drink applications, of cationization agents, and of flame retardants, of products which will be used as detergent ingredient and of epichlorohydrin oligomers.Type: ApplicationFiled: December 10, 2012Publication date: April 25, 2013Applicant: SOLVAY SAInventor: Solvay SA
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Publication number: 20130071930Abstract: Polyester compositions and functionalized polyester compositions are provided along with methods of making the compositions as well as methods of using the compositions, for example as a tissue engineering bioscaffold and as a drug-delivery vehicle.Type: ApplicationFiled: January 25, 2011Publication date: March 21, 2013Applicant: University of Pittsburgh - of the Commonwealth System of Higher EducationInventors: Hunghao Chu, Yadong Wang, Zhengwei You
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Patent number: 8354490Abstract: A method is provided for functionalizing nanoscale fibers including reacting a plurality of nanoscale fibers with at least one epoxide monomer to chemically bond the at least one epoxide monomer to surfaces of the nanoscale fibers to form functionalized nanoscale fibers. Functionalized nanoscale fibers and nanoscale fiber films are also provided.Type: GrantFiled: October 14, 2011Date of Patent: January 15, 2013Assignee: Florida State University Research FoundationInventors: Shiren Wang, Zhiyong Liang, Ben Wang, Chun Zhang
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Patent number: 8309229Abstract: The invention discloses specific polyester resins which are obtained by the technique of reacting polyesterpolyol oligomer of specific monomeric composition further with polyvalent carboxylic acid (anhydride) and the like; thermosetting water-borne coating compositions using the polyester resins, and coating film-forming methods using the thermosetting water-borne coating compositions.Type: GrantFiled: June 9, 2005Date of Patent: November 13, 2012Assignee: Kansai Paint Co., Ltd.Inventors: Shuichi Nakahara, Hiromi Harakawa
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Patent number: 8273853Abstract: Disclosed is a process for the preparation of emulsifiers E1 which are obtained by (a) reacting a polyol with propylene oxide or a mixture of ethylene oxide and propylene oxide, to give an intermediate Z1, (b) reacting the intermediate Z1 with epichlorohydrin, forming an intermediate Z2, (c) reacting the intermediate Z2 with an adduct of ethylene oxide or a mixture of ethylene oxide and propylene oxide, with a C1-C22 monoalcohol, provided that on average at least one epoxide function of the intermediate Z2 is reacted and on average at least one epoxide function originating from the intermediate Z2 is retained. Compounds E1 are suitable as emulsifiers for preparing aqueous emulsions or dispersions of epoxy resins.Type: GrantFiled: April 3, 2009Date of Patent: September 25, 2012Assignee: Cognis IP Management GmbHInventors: Paul Birnbrich, Hans-Josef Thomas, Giorgio Sabbadini, Ulrich Nagorny, Georg Bourscheidt
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Publication number: 20120227195Abstract: Cleaning compositions and laundry detergents comprising polyalkylene glycol-based polymers are disclosed. The polyalkylene glycol-based polymers are polyoxyalkylene-oxide capped polyalkylene-oxide-polycarboxylate comb polymers. The polyalkylene glycol-based polymer includes: a glycol-based structure unit derived from a polyalkylene glycol-based monomer, and a carboxyl-based structure unit derived from a carboxyl group-containing monomer. The glycol-based structure unit may be present at a level of 1% to 99% by mass based on 100% by mass of all structure units derived from all monomers in the polyalkylene glycol-based polymer. The carboxyl structure unit may be present at a level of 1% to 99% by mass based on 100% by mass of all the structure units derived from all the monomers in the polyalkylene glycol-based polymer. The cleaning compositions have high anti-soil redeposition ability in washing treatment and high solubility and compatibility with surfactants.Type: ApplicationFiled: December 16, 2011Publication date: September 13, 2012Inventors: Koushik Mukherjee, Kenneth Nathan Price, Hemmi Akiko, Yoneda Atsuro, Michitaka Daisuke, Nakanishi Sachiko
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Patent number: 8232365Abstract: There is disclosed a biomass-derived epoxy compound as an epoxidized product of a raw-material biomass-derived compound having a weight-average molecular weight of 300 to 10000. The biomass-derived epoxy compound has a weight-average molecular weight of 600 to 20000 and is soluble in an organic solvent for the preparation of a varnish. The epoxy compound is prepared by dissolving the raw-material biomass-derived compound in an aqueous alkali solution; adding epichlorohydrin to the solution and heating the mixture; and evaporating epichlorohydrin from the heated mixture and precipitating a biomass-derived epoxy compound, in which the aqueous alkali solution has a pH of 13.5 to 11.0. The biomass-derived epoxy compound has both high solubility in organic solvents and satisfactory heat resistance and can be manufactured in a high yield on the basis of the raw material through a less number of processes.Type: GrantFiled: December 23, 2009Date of Patent: July 31, 2012Assignee: Hitachi, Ltd.Inventors: Yoshiaki Okabe, Hiroyuki Kagawa
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Publication number: 20120157655Abstract: The present invention has an object to provide a polyalkylene glycol-based polymer having high anti-soil redeposition ability in washing treatment and having high compatibility with surfactants. The polyalkylene glycol-based polymer includes: a structure unit (a) derived from a polyalkylene glycol-based monomer (A) of a specific structure, and a structure unit (b) derived from a carboxyl group-containing monomer (B) at specific ratios.Type: ApplicationFiled: December 17, 2010Publication date: June 21, 2012Applicant: NIPPON SHOKUBAI CO, LTDInventors: Atsuro Yoneda, Akiko Hemmi, Sachiko Nakanishi, Daisuke Michitaka
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Publication number: 20120119172Abstract: The invention relates to the use of amino terminated phosphonamides and their oligomers, as flame retardant additives for a variety of polymers to impart flame retardancy while maintaining or improving processing characteristics and other important properties.Type: ApplicationFiled: November 11, 2011Publication date: May 17, 2012Applicant: FRX POLYMERS, INC.Inventors: Dieter FREITAG, Marc-Andre LEBEL, Lawino KAGUMBA, Marc E. LEBEL, Peter S. SCHULER
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Publication number: 20120065360Abstract: Provided is preparation of poly(alkylene carbonate) through alternating copolymerization of carbon dioxide and epoxide. According to the disclosure, by introducing a diepoxide compound to alternating copolymerization of carbon dioxide and epoxide compound using a metal(III) prepared with salen-type ligands containing quaternary ammonium salt as a catalyst, some of the polymer chains may be cross-linked to thus increase an average molecular weight of the copolymer and extend a distribution of molecular weight. A resin prepared according to this method may have high mechanical strength and rheological advantages.Type: ApplicationFiled: September 7, 2011Publication date: March 15, 2012Applicant: SK INNOVATION CO., LTD.Inventors: Ji Su Jeong, Sung Jae Na, Sujith Sudevan, Myung Ahn Ok, Yong Gyu Han, Kwang Jin Chung, Bun Yeoul Lee, Anish Cyriac
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Patent number: 8067093Abstract: The present invention relates to compounds suitable to use as curing agents for epoxy systems which can be obtained by reacting an amine-functional compound with an ?-? unsaturated acid and/or ester and a mono-functional epoxy compound. The invention further relates to coating compositions comprising these curing agents.Type: GrantFiled: January 15, 2007Date of Patent: November 29, 2011Assignee: Akzo Nobel Coatings International B.V.Inventors: Steve Alister Nixon, Susan Elizabeth Borthwick
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Patent number: 8022151Abstract: Provided are: an adamantane derivative represented by the following general formula (I) giving a cured product excellent in optical characteristics such as transparency and light resistance, durabilities such as heat resistance, and electrical characteristics such as dielectric constant; a method of producing the adamantane derivative; a resin composition containing the adamantane derivative and an epoxy resin curing agent; and a sealing agent for an optical semiconductor using the resin composition: where: Y represents a group selected from a hydrocarbon group, a hydroxyl group, a carboxyl group, and an ?O group formed by two Y's being combined together; Z represents a cyclic ether group; n represents an integer of 0 or more; and p represents an integer of 2 to 4 and q represents an integer of 0 to 14, while satisfying 2?p+q?16.Type: GrantFiled: April 28, 2008Date of Patent: September 20, 2011Assignee: Idemitsu Kosan Co., Ltd.Inventors: Yasunari Okada, Hidetoshi Ono, Katsuki Ito
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Patent number: 8008394Abstract: The invention is directed to coating compositions for direct coating of plastic substrates, comprising the following components: A) a hydroxy-functional binder component, comprising at least one branched hydroxy-functional polyester having a hydroxyl value of 50-300 mg KOH/g solid, a polydispersity of <2 and a number average molecular weight (Mn) of 300 to 4000, having at least three branches, and having at least one hydroxyl group on each of the at least three branches, B) a crosslinking component for the hydroxyfunctional binder component A), C) at least one adhesion promoting component and optionally, D) organic solvents, additives conventionally found in paints as well as pigments and/or fillers.Type: GrantFiled: July 13, 2005Date of Patent: August 30, 2011Assignee: E.I. du Pont de Nemours & CompanyInventors: Wolfgang Stricker, Udo Hellmann, Yvonne Seulen, Rolf Lackmann
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Publication number: 20110089376Abstract: Disclosed is a dispersant having a multifunctional head, and a phosphor paste composition comprising the dispersant. The dispersant has a multifunctional head that comprises an acidic group, a basic group and an aromatic group, thereby enhancing an affinity for the surface of phosphor particles and improving dispersibility.Type: ApplicationFiled: December 22, 2010Publication date: April 21, 2011Applicant: SAMSUNG ELECTRONICS CO., LTD.Inventors: Seon Mi YOON, Hyeon Jin SHIN, Jae Young CHOI, Seong Jae CHOI, Bum Jae LEE, Ungyu PAIK, Sangkyu LEE, Jung Hwan LEE
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Patent number: 7893189Abstract: The invention is directed to novel poly(ether-ester)polyols, processes for their production from monocarboxylic or polycarboxylic acid esters with one or more bound polyether chain(s). This invention also relates to the production of polyurethane materials in which the isocyanate-reactive component comprises these poly(ether-ester)polyols.Type: GrantFiled: February 4, 2010Date of Patent: February 22, 2011Assignee: Bayer MaterialScience AGInventors: Klaus Lorenz, Jorg Hofmann, Hartmut Nefzger
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Publication number: 20100311939Abstract: This invention relates to the use of adducts of 2 to 50 moles of propylene oxide with hydroxycarboxylic acids or polycarboxylic acids, as monomer or co-monomer components for the production of polyesters and polyurethanes, or as reactive solvents for polymers.Type: ApplicationFiled: May 2, 2008Publication date: December 9, 2010Applicant: Cognis IP Management GmbHInventors: Joaquin Bigorra Llosas, Luis Llaurado, Francesc Gusi
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Patent number: 7828271Abstract: Process for preparing an alkoxypolyoxyalkylene (meth)acrylate in which a) a metal alkoxide MetOR10 is initially charged, b) an alkylene oxide of the formula (IV) is added and reacted with the metal alkoxide and c) (meth)acrylic anhydride is added directly and reacted with the reaction product from step b). Appropriately, in step c), a stabilizer mixture is added which comprises, for example, the following components I. at least one compound of the formula (I) II. at least one compound of the formula (IIa or IIb) or of the formula (IV) III.Type: GrantFiled: January 30, 2007Date of Patent: November 9, 2010Assignee: Evonik Roehm GmbHInventors: Uwe-Martin Wiesler, Joachim Knebel, Brigitte Mess
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Patent number: 7816067Abstract: To provide a coating-type underlayer coating forming composition containing a naphthalene resin derivative. A coating-type underlayer coating forming composition for lithography comprising a compound of formula (1): wherein A is an organic group having an aromatic group, R1 is hydroxy group, an alkyl group, an alkoxy group, a halogen group, a thiol group, an amino group or an amide group, m1 is the number of A substituted on the naphthalene ring and is an integer of 1 to 6, m2 is the number of R1 substituted on the naphthalene ring and is an integer of 0 to 5, a sum of m1 and m2 (m1+m2) is an integer of 1 to 6, in cases where the sum is an integer other than 6, the reminder is hydrogen atom, and n is the number of repeating units ranging from 2 to 7000.Type: GrantFiled: May 24, 2006Date of Patent: October 19, 2010Assignee: Nissan Chemical Industries, Ltd.Inventors: Tomoyuki Enomoto, Takahiro Kishioka, Takahiro Sakaguchi
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Publication number: 20100179300Abstract: Product containing epichlorohydrin and at least one alkyl glycidyl ether in an amount of less than 0.1 g/kg of product. Use of the product containing epichlorohydrin in the manufacture of epoxy resins, of glycidyl ethers, of glycidyl esters, of glycidyl amides, of glycidyl imides, of products that will be used in food and drink applications, of cationization agents, and of flame retardants, of products which will be used as detergent ingredient and of epichlorohydrin oligomers.Type: ApplicationFiled: June 11, 2008Publication date: July 15, 2010Applicant: SOLVAY (SOCIETE ANONYME)Inventors: Noel Boulos, Philippe Krafft, Patrick Gilbeau, Dominique Balthasart
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Publication number: 20100168266Abstract: Provided are a photosensitive resin and a photosensitive resin composition comprising the photosensitive resin. The photosensitive resin has the structure of Formula 1, which is described in the specification. The photosensitive resin and the photosensitive resin composition have good sensitivity, improved resistance to heat and chemicals, and excellent storage stability. Further provided are a method for preparing the photosensitive resin and a cured product of the photosensitive resin composition.Type: ApplicationFiled: August 20, 2008Publication date: July 1, 2010Applicant: LG CHEM, LTD.Inventors: Min Young Lim, Sung Hyung Kim, Han Soo Kim, Yoon Hee Heo, Dae Hyun Kim, Ji Heum Yoo, Sun Hwa Kim
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Patent number: 7727426Abstract: Disclosed is an epoxy resin composition which is solid at ordinary room temperature, cures with excellent light resistance and heat resistance and minimal shrinkage, and is useful for encapsulating LEDs. The epoxy resin composition is characterized by comprising as an essential component an epoxy resin having an epoxy equivalent of 300-1000 g/eq and a softening point of 65-110° C. obtained by reacting a nonaromatic polycarboxylic acid (A) having an acid value of 100-250 mgKOH/g with a nonaromatic epoxy resin (B) having an epoxy equivalent of 100-400 g/eq. The nonaromatic polycarboxylic acid (A) may be obtained by reacting 1,4-cyclohexanedimethanol, 2,2-bis(4-hydroxycyclohexyl)propane, or 3,9-bis(1,1-dimethyl-2-hydroxyethyl)-2,4,8,10-tetraoxaspiro[5,5]undecane with methylhexahydrophthalic acid or hexahydrophthalic acid.Type: GrantFiled: August 23, 2006Date of Patent: June 1, 2010Assignee: Nippon Steel Chemical Co., Ltd.Inventors: Kazumasa Kobayashi, Chiaki Asano, Hiroshi Sato, Yasuyuki Takeda, Kazuhiko Yoshida
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Publication number: 20100093947Abstract: Provided are: an adamantane derivative represented by the following general formula (I) giving a cured product excellent in optical characteristics such as transparency and light resistance, durabilities such as heat resistance, and electrical characteristics such as dielectric constant; a method of producing the adamantane derivative; a resin composition containing the adamantane derivative and an epoxy resin curing agent; and a sealing agent for an optical semiconductor using the resin composition: where: Y represents a group selected from a hydrocarbon group, a hydroxyl group, a carboxyl group, and an ?O group formed by two Y's being combined together; Z represents a cyclic ether group; n represents an integer of 0 or more; and p represents an integer of 2 to 4 and q represents an integer of 0 to 14, while satisfying 2?p+q?16.Type: ApplicationFiled: April 28, 2008Publication date: April 15, 2010Applicant: IDEMITSU KOSAN CO., LTD.Inventors: Yasunari Okada, Hidetoshi Ono, Katsuki Ito
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Publication number: 20100087588Abstract: Embodiments relate to viscosifiers that are terminated polymers that have functional terminal groups. The polymers being pre-extended by polyepoxides and being reacted to give polymers that are terminated by other functional groups. The viscosifiers have a low content in educts or educt descendants that deteriorate the properties of compositions and considerably reduce or even exclude the formation of high-molecular addition products so that the products obtained have low viscosity and good storage stability.Type: ApplicationFiled: December 21, 2007Publication date: April 8, 2010Applicant: SIKA TECHNOLOGY AGInventors: Andreas Kramer, Jan Olaf Schulenburg, Jurgen Finter
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Publication number: 20090197094Abstract: The invention discloses specific polyester resins which are obtained by the technique of reacting polyesterpolyol oligomer of specific monomeric composition further with polyvalent carboxylic acid (anhydride) and the like; thermosetting water-borne coating compositions using the polyester resins, and coating film-forming methods using the thermosetting water-borne coating compositions.Type: ApplicationFiled: June 9, 2005Publication date: August 6, 2009Inventors: Shuichi Nakahara, Hiromi Harakawa
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Publication number: 20090099053Abstract: Provided is a polymer-based detergent builder which is capable of effectively suppressing deposition of a surfactant, and effectively preventing soil re-deposition, even in washing using high hardness water. Specifically, the present invention solves the above problem by a graft polymer with a hydrocarbon group made by graft polymerization of monomer components containing a hydrophilic monomer having an anionic group or a hydroxyl group, on a polyoxyalkylene-based compound represented by the following formula (1): wherein R represents a straight chain or branched C10 to C20 alkyl or alkenyl group; X represents: p represents 0 or 1; Y represents: wherein R1 to R4 represent a C2 to C6 alkylene group; R5 represents a hydrogen atom, or a group represented by the following formula (2): wherein R6 and R7 represent a C2 to C20 alkylene group; s represents an integer of 0 to 200; Z represents a C2 to C20 oxyalkylene group; q represents an integer of 17 to 200; and r represents an integer of 1 to 6.Type: ApplicationFiled: March 23, 2007Publication date: April 16, 2009Applicant: Nippon Shokubai Co., LTDInventors: Atsuro Yoneda, Akiko Hemmi
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Publication number: 20090076218Abstract: Low VOC thermosetting polyester acrylic resins are made by esterification of unsaturated epoxide such as glycidyl methacrylate, and a polyacid which is the half-ester formed by reacting an acid or its anhydride with a polyol is disclosed. The obtained low viscosity resin is useful for making a low or zero VOC gel coat with excellent hydrolytic and weather resistance.Type: ApplicationFiled: April 4, 2008Publication date: March 19, 2009Inventors: Ming Yang Zhao, Chih-Pin Hsu, Frederic Bauchet, Jeremy Warren
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Publication number: 20090053647Abstract: [Object] To provide a coating-type underlayer coating forming composition containing a naphthalene resin derivative. [Means for Solving Problems] A coating-type underlayer coating forming composition for lithography comprising a compound of formula (1): wherein A is an organic group having an aromatic group, R1 is hydroxy group, an alkyl group, an alkoxy group, a halogen group, a thiol group, an amino group or an amide group, m1 is the number of A substituted on the naphthalene ring and is an integer of 1 to 6, m2 is the number of R1 substituted on the naphthalene ring and is an integer of 0 to 5, a sum of m1 and m2 (m1+m2) is an integer of 1 to 6, in cases where the sum is an integer other than 6, the reminder is hydrogen atom, and n is the number of repeating units ranging from 2 to 7000.Type: ApplicationFiled: May 24, 2006Publication date: February 26, 2009Applicant: NISSAN CHEMICAL INDUSTRIES, LTD.Inventors: Tomoyuki Enomoto, Takahiro Kishioka, Takahiro Sakaguchi
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Publication number: 20090001322Abstract: Process for preparing an alkoxypolyoxyalkylene (meth)acrylate in which a) a metal alkoxide MetOR10 is initially charged, b) an alkylene oxide of the formula (IV) is added and reacted with the metal alkoxide and c) (meth)acrylic anhydride is added directly and reacted with the reaction product from step b). Appropriately, in step c) , a stabilizer mixture is added which comprises, for example, the following components I. at least one compound of the formula (I) II. at least one compound of the formula (IIa or IIb) or of the formula (IV) III.Type: ApplicationFiled: January 30, 2007Publication date: January 1, 2009Applicant: Evonik Roehm GmbHInventors: Uwe-Martin Wiesler, Joachim Knebel, Brigitte Mess
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Publication number: 20080311395Abstract: Disclosed is a pressure sensitive adhesive composition comprising a (meth)acrylic polymer comprising, as a monomer component, 0.1 to 4.9% by weight of a reactive monomer having an alkylene oxide group, wherein the reactive monomer has an average number of moles of an oxyalkylene unit added to the reactive monomer falls within the range from 3 to 40, and a pressure sensitive adhesive composition comprising an alkali metal salt. The present invention provides a pressure sensitive adhesive composition which is excellent in antistatic property of a no-electrification-prevented adherend upon peeling, and has reduced staining of an adherend and is excellent in adhesion reliance. Also disclosed is an antistatic pressure sensitive adhesive sheet or surface-protecting film prepared using the composition.Type: ApplicationFiled: September 4, 2006Publication date: December 18, 2008Inventors: Natsuki Ukei, Tatsumi Amano, Masahiko Ando
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Publication number: 20080287645Abstract: Disclosed herein is a novel stabilizer for preparing a polymer polyol, which is used to prepare polyurethane foam having improved physical properties. The stabilizer is prepared by allowing maleic anhydride to react with a polyether polyol, having an OH functionality of 3-8 and a molecular weight of 3,000-15,000, and then adding ethylene oxide to the reaction solution. Because the molecular weight and functionality of the stabilizer are increased through aging and dimerization, the stabilizer has a high molecular weight of 5,000-30,000, a high OH functionality of 6-10 and a viscosity of 3,000-15,000 cps/25° C. A polymer polyol derived from the stabilizer has low viscosity compared to those of prior products and contributes to the improvement in the physical properties of the resulting polyurethane foam.Type: ApplicationFiled: December 14, 2007Publication date: November 20, 2008Applicant: Korea Kumbo Petrochemical Co., Ltd.Inventors: Jang Hyun Choi, Seung Moo Huh, Jeon Koo Lee, Jong Yeol Choi
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Publication number: 20080207780Abstract: Hydroxyl polyester compounds or compositions which are useful as oilfield demulsifiers are prepared through esterifying carboxylic compounds and epoxide compounds under controlled molar ratios. The hydroxyl polyesters are useful as biodegradable demulsifiers on oil productions.Type: ApplicationFiled: February 22, 2008Publication date: August 28, 2008Inventor: Wei Wang
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Patent number: 7348128Abstract: A photosensitive resin which exhibits excellent storage stability, affinity, miscibility, or solubility with respect to a variety of compounds, and high sensitivity can be solidified even under hydrous conditions as well as exhibiting high cure-related sensitivity and high flexibility and being uniformly solidified even under highly hydrous conditions, a photosensitive resin composition containing the resin, and a novel compound. The photosensitive resin is a saponified poly(vinyl acetate)-based photosensitive resin having a structural unit represented by formula (1): (wherein R1 represents H or Me; R2 represents a linear or branched C2-C10 alkylene group; n is an integer of 1 to 3; X represents m is an integer of 0 to 6; and Y represents an aromatic ring or a single bond).Type: GrantFiled: November 13, 2003Date of Patent: March 25, 2008Assignee: Toyo Gosei Co., Ltd.Inventors: Seigo Yamada, Masahiro Takano, Mitsuharu Miyazaki, Shin Utsunomiya
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Patent number: 7321008Abstract: Star polymers of soft segment forming monomers are useful in forming surgical devices. The star polymers can be endcapped with diketene acetals, mixed with a filler and/or cross-linked. The polymer compositions are useful, for example, as fiber coatings, surgical adhesives or bone putty, or tissue growth substrate.Type: GrantFiled: August 28, 2006Date of Patent: January 22, 2008Assignee: United States Surgical CorporationInventors: Steven L. Bennett, Kevin Connolly, Elliott Gruskin, Ying Jiang
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Patent number: 7282530Abstract: A polymer for forming an organic anti-reflective coating layer between an etching layer and a photoresist layer to absorb an exposure light in a photolithography process and a composition comprising the same are disclosed. The polymer for forming an organic anti-reflective coating layer has repeating units represented by wherein, R is a substituted or non-substituted alky group of C1 to C5.Type: GrantFiled: March 2, 2006Date of Patent: October 16, 2007Assignee: Dongjin Semichem Co., Ltd.Inventors: Sang-Jung Kim, Deog-Bae Kim, Jae-Hyun Kim
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Patent number: 7264706Abstract: An improved aqueous cathodic electrocoating composition that contains an anti-crater agent which is a water-reducible polyester resin having an acid value less than 40 mg KOH/g. The water-reducible polyester is the reaction product of (1) a hydroxy cyclic carbonate; (2) a polycarboxylic acid anhydride; (3) optional monofunctional epoxy resin; (4) a polyfunctional epoxy resin; and, (5) a polyamine compound containing tertiary amine and either primary or secondary functionality. The reaction product is neutralized in the presence of acid and water to convert the tertiary amine groups to water-dilutable groups. Hydrolyzable silane groups can also be incorporated into the reaction product to further enhance its crater resistance property. The electrocoat composition produces coatings having a smoother appearance with fewer craters without adversely affecting intercoat adhesion of the cured film to subsequent coating layers applied thereover.Type: GrantFiled: October 18, 2004Date of Patent: September 4, 2007Assignee: E. I. du Pont de Nemours and CompanyInventors: Allisa Gam, Thomas Grawe, Joachim Ruerup, Andreas Fieberg
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Patent number: 6936664Abstract: The present invention discloses reworkable epoxy compositions suitable for encapsulation of and underfill for electronic components comprising (a) a curable epoxy component which is the reaction product of an epoxidized 1-alkenyl ether or 1-cycloalkenyl ether and a polycarboxylic acid, the reaction product being substantially free of unreacted acid or acid impurities; and (b) a curing agent for the epoxy component, wherein the reaction products of the epoxy composition are reworkable. The cured epoxy compositions of this invention contain thermally labile weak ?-alkoxy ester linkages which provide for the reworkable aspect of the invention.Type: GrantFiled: October 4, 2001Date of Patent: August 30, 2005Assignee: Henkel CorporationInventors: John G. Woods, Susanne D. Morrill, Jianzhao Wang, Brendan J. Kneafsey
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Patent number: 6841654Abstract: An inexpensive polyimide-free alignment layer comprising a mixture of an epoxy and a reactive liquid crystal material is used for fabricating liquid crystal displays (LCDs). The alignment layer can be cast onto a previously aligned layer, without destroying the alignment of the underlying layer, thus allowing for monolithic fabrication of compensator stacks, without film transfer lamination.Type: GrantFiled: May 15, 2001Date of Patent: January 11, 2005Assignee: Rockwell Scientific Licensing, LLCInventors: Dong-Feng Gu, Young Chung, Len Hale
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Patent number: 6610817Abstract: Reactive diluents are formed by reaction of a compound having at least two glycidyl ester groups and a compound having at least one hydroxyl and/or carboxyl group. The diluents are useful in coating compositions together with crosslinking agents and optional other vehicle components.Type: GrantFiled: December 18, 2000Date of Patent: August 26, 2003Assignee: BASF CorporationInventors: William H. Plassmann, Anthony J. Tye, Patrick J. Mormile
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Publication number: 20030105179Abstract: A free radical-curable epoxy composition comprises epoxy resin and a copolymerizable material including a monomer having amide, acrylamide, or hydroxyl functionality, and is advantageously devoid of any cationic catalyst ingredient.Type: ApplicationFiled: November 28, 2001Publication date: June 5, 2003Inventor: John R. Arnold
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Patent number: 6403842Abstract: Disclosed are a process for producing a poly(alkylene ether) glycol which comprises polymerizing a cyclic ether in the presence of at least a catalyst and a carboxylic acid anhydride, wherein the carboxylic acid anhydride has a ketene dimer content of 50 ppm or lower, and a process for producing a poly(alkylene ether) glycol which comprises polymerizing a cyclic ether in the presence of at least a catalyst and acetic anhydride, wherein the acetic anhydride is purified acetic anhydride obtained by treating acetic anhydride by contacting with at least one of a metal oxide and a mixed oxide, and optionally, distilling the acetic anhydride simultaneously with or after the contact treatment.Type: GrantFiled: January 13, 2000Date of Patent: June 11, 2002Assignee: Mitsubishi Chemical CorporationInventors: Mitsuharu Kobayashi, Nobuyuki Murai
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Patent number: 6355773Abstract: The invention features a functional polymer which provides three primary colors and is free from aggregation of high molecular chains. The functional polymer is obtained by copolymerization of fluorene unit and acene unit having three or more benzene rings or hetero rings, and has the structure denoted by the following formula: wherein A through H are selected from alkyl, thioalkyl, alkoxy, aryl, aryloxy, or the like; I and K through W are selected from C, O, N, P, S, and Si, R1 and R2 are selected from alkyl (iso or normal), cycloalkyl, acyl, or the like; p and q are integer numbers which satisfy p+q≧2; and n and m are integers equal to or greater than 1.Type: GrantFiled: November 22, 2000Date of Patent: March 12, 2002Assignee: Kabushiki Kaisha Toyota Chuo KenkyushoInventors: Karl-Heinz Weinfurtner, Hisayoshi Fujikawa, Shizuo Tokito, Yasunori Taga