Nitrogen Reactant Contains At Least One Amino-nitrogen Atom Patents (Class 528/183)
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Patent number: 12195583Abstract: A biodegradable resin composition is obtained by subjecting an aliphatic dicarboxylic acid or an acid component comprising a mixture of an aliphatic dicarboxylic acid and an aromatic dicarboxylic acid, and an aliphatic diol sequentially to esterification, transesterification, polycondensation, chain extension and solid-state polymerization reactions in the presence of a polyfunctional compound represented by the following Formula 1: wherein n is an integer ranging from 1 to 11, and m is an integer ranging from 2 to 30.Type: GrantFiled: November 23, 2020Date of Patent: January 14, 2025Assignee: ANKOR BIOPLASTICS CO., LTD.Inventors: Heon Young Lim, Yoon Cho, Myung Je You
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Patent number: 11993867Abstract: Spun ABPBI fibers and a process for the preparing spun ABPBI fibers using a high molecular weight ABPBI dope solution suitable for spinning are provided. A process for preparing the high molecular weight ABPBI dope solution suitable for spinning is also provided. The spun ABPBI fibers can be used in the preparation of high temperature thermally resistant articles.Type: GrantFiled: September 12, 2019Date of Patent: May 28, 2024Assignee: GHARDA CHEMICALS LIMITEDInventors: Prakash D. Trivedi, Mathew Abraham, Amit Kundu
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Patent number: 11130742Abstract: Copoly(imide oxetane) materials are disclosed that can exhibit a low surface energy while possessing the mechanical, thermal, chemical and optical properties associated with polyimides. The copoly(imide oxetane)s are prepared using a minor amount of fluorinated oxetane-derived oligomer with sufficient fluorine-containing segments of the copoly(imide oxetane)s migrate to the exterior surface of the polymeric material to yield low surface energies. Thus the coatings and articles of manufacture made with the copoly(imide oxetane)s of this invention are characterized as having an anisotropic fluorine composition. The low surface energies can be achieved with very low content of fluorinated oxetane-derived oligomer. The copolymers of this invention can enhance the viability of polyimides for many applications and may be acceptable where homopolyimide materials have been unacceptable.Type: GrantFiled: April 21, 2020Date of Patent: September 28, 2021Assignee: United States of America as represented by the Administrator of NASAInventors: Christopher J. Wohl, Jr., John W. Connell, Emilie J. Siochi, Joseph G. Smith, Jr.
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Patent number: 10894848Abstract: Certain cyclopentadienone monomers having polar moieties are useful in forming polyarylene resins having improved solubility in certain organic solvents and are useful in forming polyarylene resin layers in electronics applications.Type: GrantFiled: October 23, 2017Date of Patent: January 19, 2021Assignee: Rohm and Haas Electronic Materials LLCInventors: Charles R. Kinzie, Daniel Greene, Christopher Gilmore, James F. Cameron, Ping Ding, Qing Min Wang, Young-Seok Kim
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Patent number: 10745557Abstract: The invention relates to thermoplastic molding compositions comprising A) 10 to 98 wt % of a thermoplastic polyamide other than B), B) 1 to 50 wt % of a thermoplastic polyamide comprising units derived from 2-pyrrolidone, C) 0 to 40 wt % of a halogen-free flame retardant, D) 0 to 60 wt % of a fibrous or particulate filler or mixtures thereof, E) 0 to 30 wt % of further added substances, wherein the weight percentages A) to E) sum to 100%.Type: GrantFiled: January 24, 2017Date of Patent: August 18, 2020Assignee: BASF SEInventors: Roland Helmut Kraemer, Motonori Yamamoto
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Patent number: 10647814Abstract: The invention relates to a process for producing an aromatic polyimide, comprising the following steps: (a) preparing one or more salt(s) by reacting one or more aromatic tetracarboxylic acid(s) in the solid state and one or more diamine(s), optionally in the presence of one or more chain limiter(s), in the presence of one or more binder(s), comprising one or more organic liquid(s), in an amount of from 1% to 25% by weight relative to the total weight of the aromatic tetracarboxylic acid(s), of the diamine(s) and of the optional chain limiter(s), then; (b) polymerising the salt(s) obtained in step (a).Type: GrantFiled: December 17, 2015Date of Patent: May 12, 2020Assignee: RHODIA OPERATIONSInventor: Thomas Ternisien
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Patent number: 9944751Abstract: Embodiments of the present disclosure provide for a triptycene-based A-B monomer, a method of making a triptycene-based A-B monomer, a triptycene-based ladder polymer, a method of making a triptycene-based ladder polymers, a method of using triptycene-based ladder polymers, a structure incorporating triptycene-based ladder polymers, a method of gas separation, and the like.Type: GrantFiled: July 23, 2014Date of Patent: April 17, 2018Assignee: KING ABDULLAH UNIVERSITY OF SCIENCE AND TECHNOLOGYInventors: Ingo Pinnau, Bader Ghanem, Raja Swaidan
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Patent number: 9890250Abstract: A method for producing a polybenzoxazole resin, in which even when a polybenzoxazole precursor is heat treated at a low temperature, a polybenzoxazole resin that is excellent in mechanical properties, such as tensile elongation, and in chemical resistance, is suppressed in terms of coloration, and is high in transparency can be produced. A polybenzoxazole resin is formed by heating a polybenzoxazole precursor which is obtained by allowing an aromatic diaminediol and a diformyl compound or a dicarboxylic acid dihalide, to react with each other in a solvent containing an amide compound or a urea compound each having a specified structure, at 120° C. to 350° C.Type: GrantFiled: May 19, 2015Date of Patent: February 13, 2018Assignee: TOKYO OHKA KOGYO CO., LTD.Inventors: Kunihiro Noda, Hiroki Chisaka, Dai Shiota, Masaru Shida
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Patent number: 9378863Abstract: An insulating varnish forms an insulating coating film having a shape that corresponds to the shape of an opening of a die, having a uniform thickness. The insulating varnish is applied onto a surface of a conductor, subsequently passes through a die to remove the excess applied insulating varnish, and is then dried or baked to form an insulating coating film on the surface of the conductor. The insulating varnish has a viscosity of 10 Pa·s or more measured by a B-type viscometer at 30° C. The insulating varnish preferably contains no filler, and is preferably a polyimide precursor solution. Since the insulating varnish has a high viscosity, baking and solidification can be performed while maintaining a shape formed when the insulating varnish passes through a die.Type: GrantFiled: November 5, 2012Date of Patent: June 28, 2016Assignees: SUMITOMO ELECTRIC INDUSTRIES, LTD., SUMITOMO ELECTRIC WINTEC, INC.Inventors: Kengo Yoshida, Masaaki Yamauchi, Masataka Shiwa, Yuji Hatanaka, Junichi Imai, Jun Sugawara, Toru Shimizu, Hideaki Saito, Yuudai Furuya
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Patent number: 9293555Abstract: A semiconductor device includes a semiconductor substrate; an insulating film arranged on the semiconductor substrate; an electrode that contacts a portion of a side surface of the insulating film; a first passivation film that is arranged extending from the electrode to the insulating film, and contacts a surface of the insulating film, and contacts a surface of the electrode; and a second passivation film that is arranged on the first passivation film. A difference between a linear expansion coefficient of the first passivation film and a linear expansion coefficient of the insulating film is smaller than a difference between the linear expansion coefficient of the first passivation film and a linear expansion coefficient of the electrode, and a position where the first passivation film contacts a boundary between the electrode and the insulating film is positioned lower than an upper surface of the insulating film.Type: GrantFiled: July 17, 2013Date of Patent: March 22, 2016Assignee: TOYOTA JIDOSHA KABUSHIKI KAISHAInventor: Masakazu Watanabe
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Patent number: 9193675Abstract: Described are antioxidant macromolecules and methods of making and using same.Type: GrantFiled: October 4, 2011Date of Patent: November 24, 2015Assignee: Polnox CorporationInventors: Ashok L. Cholli, Rajesh Kumar
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Patent number: 9090996Abstract: Methods and apparatuses are provided for producing fibers via electroblowing. In an embodiment of the present invention, a polymer stream, formed from a spinning nozzle, passes through a first temperature zone for a first residence time, and subsequently passes through a second temperature zone for a second residence time, where the second zone has a higher average temperature than the first zone. In an embodiment of an apparatus of the present invention, the apparatus has a region between the spinning nozzle outlet and collector that includes at least two zones through which a polymer stream passes, where the second zone has a higher average temperature than the first zone.Type: GrantFiled: August 15, 2012Date of Patent: July 28, 2015Assignee: E I DU PONT DE NEMOURS AND COMPANYInventor: Gregory T. Dee
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Patent number: 9056284Abstract: A chlorine resistant polyamide is formed from the reaction product of an amine and an acid chloride monomer wherein both the amine and the acid chloride monomer are modified with electron-withdrawing groups that exhibit sufficient activity to (i) minimize any chlorination on both the amine and acid chloride and (ii) minimize N-chlorination. A membrane is made from the polyamide for use, for example, in a desalination unit.Type: GrantFiled: August 10, 2012Date of Patent: June 16, 2015Assignee: The United States of America, as represented by The Secretary of the InteriorInventors: Andrew Patrick Murphy, Robert Lee Riley, Yuliana Elvira Porras Mendoza
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Patent number: 8986846Abstract: A thermosetting oligomer or thermosetting polymer is provided. The thermosetting oligomer or thermosetting polymer contains repeating units, each of which has at least one thermosetting functional group in the side chain and is represented by Formula 1: where repeating units include X1, A1, and Y1 subunits, sidechain units include linking unit L and thermosetting functional group Z, and n is an integer from 1 to 4. The thermosetting oligomer or thermosetting polymer has a low coefficient of thermal expansion and high or no glass transition temperature, stiffness, processability, heat resistance and mechanical properties. The thermosetting oligomer or thermosetting polymer is highly soluble, wettable and dimensionally stable and is suitable for use in films, prepregs and printed circuit boards. Further provided are a thermosetting resin composition including the thermosetting oligomer or thermosetting polymer and a printed circuit board using the composition.Type: GrantFiled: June 23, 2009Date of Patent: March 24, 2015Assignee: Samsung Electro-Mechanics Co., Ltd.Inventors: Jae Jun Lee, Mahn Jong Kim, Kwang Hee Kim
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Patent number: 8974903Abstract: Porous cross-linked polyimide-urea networks are provided. The networks comprise a subunit comprising two anhydride end-capped polyamic acid oligomers in direct connection via a urea linkage. The oligomers (a) each comprise a repeating unit of a dianhydride and a diamine and a terminal anhydride group and (b) are formulated with 2 to 15 of the repeating units. The subunit was formed by reaction of the diamine and a diisocyanate to form a diamine-urea linkage-diamine group, followed by reaction of the diamine-urea linkage-diamine group with the dianhydride and the diamine to form the subunit. The subunit has been cross-linked via a cross-linking agent, comprising three or more amine groups, at a balanced stoichiometry of the amine groups to the terminal anhydride groups. The subunit has been chemically imidized to yield the porous cross-linked polyimide-urea network. Also provided are wet gels, aerogels, and thin films comprising the networks, and methods of making the networks.Type: GrantFiled: March 14, 2013Date of Patent: March 10, 2015Assignees: Ohio Aerospace Institute, The United States of America, represented by the Administrator of the National Aeronautics and Space AdministrationInventors: Mary Ann B. Meador, Baochau N. Nguyen
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Patent number: 8846847Abstract: A sterically hindered phenol and phosphite based compound represented the following formula: and its use as an antioxidant in a wide range of materials including, but not limited to, food, plastics, elastomers, composites and petroleum based products is disclosed herein.Type: GrantFiled: May 29, 2013Date of Patent: September 30, 2014Assignee: Polnox CorporationInventors: Ashok L. Cholli, Rajesh Kumar
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Patent number: 8697831Abstract: The invention is directed to a process for preparing polyamide polymers, particularly nylon 6, 6 and nylon 6, comprising fluoroether functionalized aromatic repeat units. In one embodiment, 1,6 diaminohexane, adipic acid, and fluoroether functionalized terephthallic or isophthallic acid or diester are reacted to form a polymer. The polymers so formed are useful for imparting soil resistance to polyamides, particularly in the form of films, molded parts, fibers, fabrics, and carpets.Type: GrantFiled: June 22, 2011Date of Patent: April 15, 2014Assignee: E I du Pont de Nemours and CompanyInventors: Neville Everton Drysdale, David Neil Marks, Fredrik Nederberg
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Patent number: 8691933Abstract: Disclosed are compositions comprising antioxidants and stabilizers, such as, acid scavengers or organic phosphorus stabilizers, and optionally further comprising co-stabilizers. The disclosed compositions are useful as stabilizers for polyolefins and other polymeric materials. The disclosed compositions and methods generally provide longer shelf lives and better oxidative resistance to materials than currently available antioxidants.Type: GrantFiled: July 1, 2013Date of Patent: April 8, 2014Assignee: Polnox CorporationInventors: Vijayendra Kumar, Rajesh Kumar, Ashish Dhawan, Sui-Zhou Yang, Ashok L. Cholli
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Publication number: 20140011905Abstract: The present invention relates to novel polyamic acid; a photosensitive resin composition satisfying excellent flexibility and low stiffness and exhibiting excellent heat resistance and plating resistance; a dry film obtained from the photosensitive resin composition; and a circuit board including the dry film.Type: ApplicationFiled: March 19, 2012Publication date: January 9, 2014Applicant: LG CHEM, LTD.Inventors: You-Jin Kyung, Hee-Jung Kim, Kwang-Joo Lee, Jung-Hak Kim
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Patent number: 8598382Abstract: A sterically hindered phenol and phosphite based compound represented by the following formula: and its use as an antioxidant in a wide range of materials including, but not limited to, food, plastics, elastomers, composites and petroleum based products is disclosed herein.Type: GrantFiled: August 13, 2012Date of Patent: December 3, 2013Assignee: Polnox CorporationInventors: Ashok L. Cholli, Rajesh Kumar
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Patent number: 8536298Abstract: A process for preparing polyimide resins comprises stirring a diamine and a dianhydride in a solvent to form a slurry; heating the slurry to a temperature sufficient for the diamine and dianhydride to react wherein the temperature is below the melting point of the dianhydride, below the melting point of the diamine, or below the melting points of the dianhydride and diamine; and reacting the diamine and dianhydride to form a polyimide having sufficient molecular weight to precipitate from the solvent.Type: GrantFiled: May 25, 2005Date of Patent: September 17, 2013Assignee: SABIC Innovative Platics IP B.V.Inventors: Philip L. Angermeier, Robert Edgar Colborn, Robert R. Gallucci, Paul Edward Howson, Tara Jane Mullen, Roy Ray Odle, Albert Santo Stella, John Morgan Whitney
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Patent number: 8497344Abstract: A method for obtaining a composition of an aromatic polyamide containing para-phenylene terephthalamide and 2-(p-phenylene)benzimidazole terephthalamide units, the method including copolymerizing: i) a mole % of para phenylenediamine; ii) b mole % of 5(6)-amino-2-(p-aminophenyl)benzimidazole; and iii) 90-110 mole % of terephthaloyl dichloride in a mixture of N-methyl pyrrolidone and containing c wt. % of calcium chloride, wherein c is within the range from 1 to 20, and wherein the ratio a:b ranges from 1:20 to 20:1, a+b is 100 mole %, and i), ii), and iii) together comprise 1-20 wt. % of the mixture, wherein the product b·c is at least 50 and less than 215 and that the composition is a crumb with a relative viscosity ?rel of at least 4, wherein the crumb is defined as non-sticky particles at least 95% of which having an average diameter of 0.7-15 mm.Type: GrantFiled: November 11, 2004Date of Patent: July 30, 2013Assignee: Teijin Aramid B.V.Inventor: Johannes Bos
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Patent number: 8487064Abstract: Disclosed herein are polymer compounds and a method for preparing thereof. More specifically, provided are polymer compounds with well-connected, narrow size distribution free-volume element and a method for preparing the polymer compounds by thermal rearrangement for aromatic polyimides containing ortho-positioned functional groups in the solid state.Type: GrantFiled: May 20, 2011Date of Patent: July 16, 2013Assignee: Industry-University Cooperation Foundation, Hanyang UniversityInventors: Young Moo Lee, Ho-Bum Park, Chul-Ho Jung, Sang-Hoon Han
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Publication number: 20130059985Abstract: The present invention provides a method for producing a polybenzoxazole precursor having reduced contents of residual aprotic polar solvent and residual halogen without discharging a large amount of waste water during purification. The present invention specifically relates to a method for producing a polybenzoxazole precursor, which comprises synthesizing a polybenzoxazole precursor in an aprotic polar solvent, adding and mixing water and a water-insoluble solvent with the resulting polybenzoxazole precursor solution to still stand the solution, and then separating a water layer from the solution to reduce a content of impurities remaining in the polybenzoxazole precursor.Type: ApplicationFiled: August 30, 2012Publication date: March 7, 2013Applicant: Toho Chemical Industry Co., Ltd.Inventor: Naoya Kutsuzawa
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Publication number: 20130053489Abstract: This disclosure relates to polyetherimide compositions whose residual phenolic monomers exhibit little or no estradiol binding activity. Also disclosed are methods for making the disclosed polyetherimides and articles of manufacture comprising the disclosed polyetherimides.Type: ApplicationFiled: August 1, 2012Publication date: February 28, 2013Inventors: Robert R. Gallucci, James A. Mahood, Roy R. Odle, Steve Dimond
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Publication number: 20120329976Abstract: The invention is directed to a process for preparing polyamide polymers, particularly nylon 6, 6 and nylon 6, comprising fluoroether functionalized aromatic repeat units. In one embodiment, 1,6 diaminohexane, adipic acid, and fluoroether functionalized terephthallic or isophthallic acid or diester are reacted to form a polymer. The polymers so formed are useful for imparting soil resistance to polyamides, particularly in the form of films, molded parts, fibers, fabrics, and carpets.Type: ApplicationFiled: June 22, 2011Publication date: December 27, 2012Applicant: E. I. DU PONT DE NEMOURS AND COMPANYInventors: Neville Everton Drysdale, David Neil Marks, Fredrik Nederberg
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Patent number: 8334359Abstract: A polyamide modified by a compound including at least one hydroxyl group, as well as to a method for preparing such a polyamide, and articles obtained from such a polyamide are described. A polyamide modified by a compound comprising at least one aromatic hydroxyl group and chemically bonded to the polymer chain, obtained by the polymerization of polyamide monomers with at least one difunctional hydroxyaromatic compound in which both functions can react with an amino function is also described.Type: GrantFiled: September 25, 2009Date of Patent: December 18, 2012Assignee: Rhodia OperationsInventors: Franck Touraud, Stéphane Jeol
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Patent number: 8252884Abstract: Disclosed are compositions comprising antioxidants and stabilizers, such as, acid scavengers or organic phosphorus stabilizers, and optionally further comprising co-stabilizers. The disclosed compositions are useful as stabilizers for polyolefins and other polymeric materials. The disclosed compositions and methods generally provide longer shelf lifes and better oxidative resistance to materials than currently available antioxidants.Type: GrantFiled: August 24, 2011Date of Patent: August 28, 2012Assignee: Polnox CorporationInventors: Vijayendra Kumar, Rajesh Kumar, Ashish Dhawan, Sui-Zhou Yang, Ashok L. Cholli
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Patent number: 8242230Abstract: Sterically hindered phenol and phosphite based compounds, represented by formula I: and their use as antioxidants in a wide range of materials including, but not limited to, food, plastics, elastomers, composites and petroleum based products is disclosed herein.Type: GrantFiled: May 17, 2011Date of Patent: August 14, 2012Assignee: Polnox CorporationInventors: Ashok L. Cholli, Rajesh Kumar
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Publication number: 20120108763Abstract: A phenolic compound for manufacturing a modified polyamide that has an increased degree of crystallinity is described. A polyamide composition comprising at least one such phenolic compound and optionally reinforcing fillers or extenders is also described. The composition is preferably a composition to be molded, for example in the form of granules or powder, that is used for the manufacture of articles by an injection-molding process.Type: ApplicationFiled: June 22, 2010Publication date: May 3, 2012Applicant: RODIA OPERATIONSInventors: Caroll Vergelati, Olivier Andres
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Patent number: 8153753Abstract: A polyamide having at least an alicyclic or aromatic group exhibiting a light transmittance of 80% or more in the wavelength region of 450 to 700 nm is produced by using an aramide polymer comprising specific structural units at an amount of 50 mol % or more. Colorless transparent alicyclic or aromatic polyamide films having high rigidity and high thermal resistance are provided by using the polyamide. Further, the invention provides various optical members made by using the polyamide or the polyamide films, and polyamide copolymers.Type: GrantFiled: April 7, 2004Date of Patent: April 10, 2012Assignee: Toray Industries, Inc.Inventors: Hideki Moriyama, Akimitsu Tsukuda
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Patent number: 8084571Abstract: Disclosed are wholly aromatic polyamide filament and a method of manufacturing the same, characterized in that, in a process of preparing wholly aromatic polyamide polymer, a multiple tubular feed pipe for polymeric monomer and polymerization solvent with specific construction of adjacent inner paths 11a and outer paths 11b which are alternately arranged one another is used to feed either aromatic diacid chloride A or aromatic diamine dissolved in the polymerization solvent B into a polymerization reactor 20 through corresponding one among the inner and outer paths 11a and 11b. The present invention is effective to progress uniform and homogeneous polymerization over all of area of a polymerization reactor 20 leading to reduction of deviation in degree of polymerization, since polymeric monomers are miscible and react together very well immediately after putting the monomers into the reactor 20.Type: GrantFiled: May 21, 2009Date of Patent: December 27, 2011Assignee: Kolon Industries, Inc.Inventors: In-Sik Han, Jae-Young Lee, Seung-Hwan Lee, Chang-Bae Lee, So-Yeon Kwon
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Publication number: 20110281482Abstract: Exemplary embodiments provide compositions for erasable media and methods of forming polymers for erasable media. The method can include providing a first monomer, the first monomer including one or more alkoxylated bisphenols and adding at least one second monomer and a catalyst to the first monomer to form a mixture at a first temperature, the second monomer selected from the group consisting of an organic diacid, a dialkyl ester of the organic diacid, and combinations thereof. The method can also include melt condensing the mixture by increasing the temperature from the first temperature to a second temperature over a first amount of time to form one or more polymers, wherein the one or more polymers has an acid value in the range of about 0.1 mg-KOH to about 12 mg-KOH.Type: ApplicationFiled: May 13, 2010Publication date: November 17, 2011Applicant: XEROX CORPORATIONInventors: Adela Goredema, Guerino Sacripante, Gabriel Iftime, Kentaro Morimitsu, Roger Gaynor, Peter M. Kazmaier
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Publication number: 20110245450Abstract: A polyamide modified by a compound including at least one hydroxyl group, as well as to a method for preparing such a polyamide, and articles obtained from such a polyamide are described. A polyamide modified by a compound comprising at least one aromatic hydroxyl group and chemically bonded to the polymer chain, obtained by the polymerisation of polyamide monomers with at least one difunctional hydroxyaromatic compound in which both functions can react with an amino function is also described.Type: ApplicationFiled: September 25, 2009Publication date: October 6, 2011Applicant: Rhodia OperationsInventors: Franck Touraud, Stéphane Jeol
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Patent number: 8030437Abstract: A method for forming a polyimide composite article utilizes a polyimide resin system including at least a first prepolymer component and a second prepolymer component. A preform structure is tackified with the first prepolymer component. Using resin infusion or resin transfer molding techniques, the tackified preform structure is contacted with the second prepolymer component. The polyimide resin system is cured under suitable cure conditions so that the first and second prepolymer components mix and react to produce the polyimide composite structure.Type: GrantFiled: December 27, 2007Date of Patent: October 4, 2011Assignee: General Electric CompanyInventors: Stephen Mark Whiteker, Lisa Vinciguerra Shafer, Warren Rosal Ronk
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Patent number: 8013103Abstract: Disclosed herein are polymer compounds, a method for preparing thereof. More specifically, provided are polymer compounds with well-connected, narrow size distribution free-volume element and a method for preparing the polymer compounds by thermal rearrangement for aromatic polyimides containing ortho-positioned functional groups in the solid state.Type: GrantFiled: October 10, 2008Date of Patent: September 6, 2011Assignee: Industry-University Cooperation Foundation, HANYANG UNIVERSITYInventors: Young-Moo Lee, Sang-Hoon Han, Chul-Ho Jung, Ho-Bum Park
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Patent number: 8008423Abstract: Disclosed are compositions comprising antioxidants and stabilizers, such as, acid scavengers or organic phosphorus stabilizers, and optionally further comprising co-stabilizers. The disclosed compositions are useful as stabilizers for polyolefins and other polymeric materials. The disclosed compositions and methods generally provide longer shelf lifes and better oxidative resistance to materials than currently available antioxidants.Type: GrantFiled: May 28, 2010Date of Patent: August 30, 2011Assignee: Polnox CorporationInventors: Vijayendra Kumar, Rajesh Kumar, Ashish Dhawan, Sui-Zhou Yang, Ashok L. Cholli
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Patent number: 7968670Abstract: Disclosed is a polyimide resin, which is colorless and transparent and has superior properties, including mechanical properties and heat stability, and thus is usable in various fields, including semiconductor insulating films, TFT-LCD insulating films, transparent electrode films, passivation films, liquid crystal alignment layers, optical communication materials, protective films for solar cells, and flexible display substrates. Also, a liquid crystal alignment layer and a polyimide film using the polyimide resin are provided.Type: GrantFiled: December 13, 2007Date of Patent: June 28, 2011Assignee: Kolon Industries, Inc.Inventors: Hak Gee Jung, Sang Wook Park, Hyo Jun Park
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Publication number: 20110144297Abstract: The invention provides a process comprising heating a polyamic acid fiber to a temperature in the range of a first temperature and a second temperature for a period of time in the range of 5 seconds to 5 minutes to form a polyimide fiber, wherein the first temperature is the imidization temperature of the polyamic acid and the second temperature is the decomposition temperature of the polyimideType: ApplicationFiled: October 7, 2010Publication date: June 16, 2011Applicant: E. I. DU PONT DE NEMOURS AND COMPANYInventors: T. Joseph Dennes, Lakshmi Krishnamurthy, Glen E. Simmonds, Simon Frisk
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Patent number: 7956153Abstract: Sterically hindered phenol and phosphite based compounds represented by structural formula II: and their use as antioxidants in a wide range of materials including, but not limited to, food, plastics, elastomers, composites and petroleum based products is disclosed herein.Type: GrantFiled: May 28, 2010Date of Patent: June 7, 2011Assignee: Polnox CorporationInventors: Ashok L. Cholli, Rajesh Kumar
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Patent number: 7902317Abstract: Compounds are synthesized that contain nitrogen and hindered phenol functionalities of an aromatic amine and hindered phenol for use as oxidative stabilizers for organic materials, paints, lubricants, elastomers, and in other applications. The disclosed methods can efficiently synthesize target monomers and polymers without the use of expensive catalysts. Further, the disclosed methods can scale up to industrially useful quantities. In general, the methods provide an improved, highly efficient and economical process for the synthesis of macromonomers having nitrogen containing moiety and sterically hindered phenols and their corresponding polymers.Type: GrantFiled: December 2, 2005Date of Patent: March 8, 2011Assignee: Polnox CorporationInventors: Rajesh Kumar, Suizhou Yang, Ashok L. Cholli
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Publication number: 20110053080Abstract: Disclosed is a positive typed photosensitive composition including a polyamide derivative represented by the following Chemical Formula, and a heat-acid generator. where R1, R2, R4, and R5 independently represent a bivalent to hexavalent aryl group with at least two carbon atoms, R3 represents either a hydrogen atom or an alkyl group with 1 to 10 carbon atoms, k represents an integer of 10 to 1,000, 1 represents an integer of 1 to 1,000, n and m independently represent an integer of 0 to 2 (n+m>0), and X represents either a hydrogen atom or an aryl group with 2 to 30 carbon atoms.Type: ApplicationFiled: December 30, 2009Publication date: March 3, 2011Applicant: KOREA KUMHO PETROCHEMICAL CO., LTDInventors: Joo Hyeon Park, Jung Hwan Cho, Jin Han Lee, Kyung Chul Son
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Publication number: 20100317821Abstract: Disclosed is a polyimide resin, which is colorless and transparent and has superior properties, including mechanical properties and heat stability, and thus is usable in various fields, including semiconductor insulating films, TFT-LCD insulating films, transparent electrode films, passivation films, liquid crystal alignment layers, optical communication materials, protective films for solar cells, and flexible display substrates. Also, a liquid crystal alignment layer and a polyimide film using the polyimide resin are provided.Type: ApplicationFiled: December 13, 2007Publication date: December 16, 2010Applicant: KOLON INDUSTRIES, INC.Inventors: Hak Gee Jung, Sang Wook Park, Hyo Jun Park
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Patent number: 7825211Abstract: A process for synthesizing formulations for polyimides suitable for use in high-temperature composites in which all reactions other than chain-extension have already taken place prior to making a composite is described, wherein the resulting oligomers comprise a backbone and at least one difunctional endcap. The resulting resin systems have only the single step of endcap-to-endcap reactions during composite processing. Prior to the initiation temperature of these endcap-to-endcap reactions, the resins are stable affording the composite manufacturer a very large processing window.Type: GrantFiled: June 22, 2007Date of Patent: November 2, 2010Assignee: The Boeing CompanyInventors: Hyman Ralph Lubowitz, Thomas Karl Tsotsis
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Publication number: 20100121017Abstract: The invention relates to a fiber, pulp, fibril, or fibrid comprising polybenzazole having a repeating unit of formula (I) or (II) wherein Ar1 and Ar2 are independently an aromatic group having 4 to 12 carbon atoms, Ar1 has the para configuration and 40-100% of the repeating units are repeating unit I and/or repeating unit II and wherein the polybenzazole contains less than 1500 ppm of non-extractable phosphorus compound if 100% of the repeating units are repeating unit I and/or repeating unit II and X and Y are the same. The method allows the manufacture of phosphorous element free a fiber, pulp, fibril, or fibrid containing said polybenzazole precursor or polybenzazole and a spinning method for obtaining said fiber, pulp, fibril, or fibrid.Type: ApplicationFiled: April 24, 2008Publication date: May 13, 2010Applicant: TIEJIN ARAMID B.V.Inventors: Anton Peter De Weijer, Masayuki Chokai, Hiroaki Kuwahara, Dennis Wilbers
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Patent number: 7714095Abstract: Polyether polymers, such as polyetherimides, are prepared by the reaction of a dihydroxy-substituted aromatic hydrocarbon alkali metal salt, such as bisphenol A disodium salt, with a bis(N-(chlorophthalimido))aromatic compound, such as 1,3- and/or 1,4-bis(N-(4-chlorophthalimido))benzene, in a solvent such as o-dichlorobenzene and in the presence of a phase transfer catalyst such as a hexaalkylguanidinium chloride. Several embodiments may be employed to improve the method. They comprise employing substantially dry reagents, employing a high solids level in solvent, beginning with an excess of bis(N-(chlorophthalimido))-aromatic compound and incrementally adding alkali metal salt, employing alkali metal salt of small particle size, and using reagents of high purity.Type: GrantFiled: February 28, 2006Date of Patent: May 11, 2010Assignee: Sabic Innovative Plastics IP B.V.Inventors: Daniel Joseph Brunelle, Havva Yagci Acar, Farid Fouad Khouri, Thomas Link Guggenheim, David Winfield Woodruff, Norman Enoch Johnson
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Publication number: 20100029891Abstract: A thermosetting composition comprising (a) 97.9 to 40 percent by weight of at least one bis(dihydrobenzoxazine) prepared by the reaction of an unsubstituted or substituted bisphenol with at least one unsubstituted position ortho to each hydroxyl group, formaldehyde and a primary amine; (b) 2 to 50 percent by weight of at least one organic polyamine; and (c) 0.1 to 10 percent by weight of at least one curing catalyst, selected from the group of carboxylic acids, sulfonic acids and phosphonic acids having at least two acid groups and no other reactive groups; wherein the percent by weight refer to the total amount of components (a), (b) and (c) in the composition, with the proviso that (a), (b) and (c) add up to 100 percent by weight; and (d) and optionally other components. Cured products of these compositions show valuable chemical, physical and mechanical properties.Type: ApplicationFiled: January 31, 2008Publication date: February 4, 2010Applicant: HUNTSMAN INTERNATIONAL LLCInventor: Frans Setiabudi
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Patent number: 7652124Abstract: There are provided a rigid heterocyclic polymer comprising rigid recurring units such as units represented by the following formulae (a) and (b): wherein X is O, S or NH, a production process thereof, and fibers comprising the polymer.Type: GrantFiled: April 12, 2005Date of Patent: January 26, 2010Assignees: Teijin Limited, Teijin Techno Products LimitedInventors: Masayuki Chokai, Anton Peter De Weijer, Hiroaki Kuwahara, Shunichi Matsumura
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Patent number: 7605222Abstract: Copolyetherimides compositions having high glass transition temperatures and outstanding ductility are presented. The copolyetherimides having Mw of at least 40,000 comprising isomeric bis(phthalimide) structural units within a relatively narrow range of isomer proportions exhibited Tgs of at least 240° C. and outstanding Notched Izod values. The copolyetherimides comprise oxydianiline residues and structural units of the formulas (I) and (II) (III).Type: GrantFiled: August 22, 2005Date of Patent: October 20, 2009Assignee: SABIC Innovative Plastics IP B.V.Inventors: Qing Ye, David Bruce Hall, William David Richards, Daniel Joseph Brunelle, Havva Yagci Acar
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Patent number: 7528211Abstract: The invention concerns a method for preparing poly(-hydroxy acids), the polymerization reaction being performed in controlled manner in the presence of a catalytic system including a base, said base being a 5- or 6-membered aromatic heterocycle comprising at least one endocyclic nitrogen atom, provided that when the base is used alone in the catalytic system, it does not represent pyridine, 2-methylpyridine, 2,6-dimethylpyridine or 2-methoxypyridine. The invention also concerns poly(-hydroxy acids) of formula (IV). Finally, the invention concerns the use of a poly(-hydroxy acid), obtainable by the inventive method, for vectoring active principles or for making biomaterials.Type: GrantFiled: April 6, 2007Date of Patent: May 5, 2009Assignees: Isochem, Centre de la Recherche Scientifique (CNRS), Universite Paul Sabatier Toulouse IIIInventors: Didier Bourissou, Olivier Thillaye Du Boullay, Emmanuel Marchal, Bianca Martin-Vaca