Patents Issued in November 17, 2020
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Patent number: 10836824Abstract: The invention relates to an isolated immunoglobulin heavy chain polypeptide and an isolated immunoglobulin light chain polypeptide that bind to a protein encoded by the Lymphocyte Activation Gene-3 (LAG-3). The invention provides a LAG-3-binding agent that comprises the aforementioned immunoglobulin heavy chain polypeptide and immunoglobulin light chain polypeptide. The invention also provides related vectors, compositions, and methods of using the LAG-3-binding agent to treat a disorder or disease that is responsive to LAG-3 inhibition, such as cancer or an infectious disease.Type: GrantFiled: February 3, 2016Date of Patent: November 17, 2020Assignee: ANAPTYSBIO, INC.Inventors: Helen Toni Jun, Marilyn Kehry, Peter Bowers, David J. King
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Patent number: 10836825Abstract: Multispecific antibodies (e.g., bispecific antibodies) that bind to HIV gp120 and CD3 are disclosed. Also disclosed are methods of using such antibodies to treat or prevent HIV infection.Type: GrantFiled: June 21, 2018Date of Patent: November 17, 2020Assignee: GILEAD SCIENCES, INC.Inventors: Doug Rehder, Matthew R. Schenauer, Heather Stephenson, Nathan D. Thomsen
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Patent number: 10836826Abstract: Provided are drug delivery compositions and devices useful for the treatment and/or prevention of cancer and metastatic tumors. For example, a drug delivery device is provided that comprises a biodegradable scaffold carrying one or more anti-cancer therapeutic agents that activate the innate immune system (e.g., STING agonists) and/or the adaptive immune system (e.g., anti-PD-1 antibodies). The compositions and devices may include a cytokine (e.g., IL-15 superagonist). The drug delivery device can be implanted in the void volume of a resected tumor to prevent tumor regrowth and tumor metastasis. Also provided are methods of making the drug delivery compositions and devices as well as kits containing materials to provide the compositions and devices.Type: GrantFiled: August 26, 2019Date of Patent: November 17, 2020Assignee: Dana-Farber Cancer Institute, Inc.Inventors: Michael Solomon Goldberg, Chun Gwon Park
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Patent number: 10836827Abstract: Antibodies that bind specifically to glycosylated PD-L1 relative to unglycosylated PD-L1 are provided. Antibodies that recognize specific epitopes of glycosylated PD-L1 protein and can block the binding of PD-L1 to PD-1 are provided. In some aspects, PD-L1 polypeptides comprising glycosylated amino acid residues at amino and carboxy terminal positions of the PD-L1 extracellular domain are also provided. Methods for making and using such antibodies and polypeptides (e.g., for the treatment of cancer) are also provided.Type: GrantFiled: March 29, 2016Date of Patent: November 17, 2020Assignees: STCUBE, INC., BOARD OF REGENTS, THE UNIVERSITY OF TEXAS SYSTEMInventors: Stephen S. Yoo, Ezra M. Chung, Yong-Soo Kim, Mien-Chie Hung, Chia-Wei Li, Seung-Oe Lim
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Patent number: 10836828Abstract: Provided herein are anti-TREM1 antibodies and related methods of making and using anti-TREM1 antibodies. Also provided are methods and compositions for enhancing an immune response and/or for the treatment of an immune-related condition in an individual, e.g., cancer, comprising killing, disabling, or depleting non-stimulatory myeloid cells using an anti-TREM1 antibody or antigen binding fragment thereof.Type: GrantFiled: April 17, 2020Date of Patent: November 17, 2020Assignee: PIONYR IMMUNOTHERAPEUTICS, INC.Inventors: Christopher Chan, Aritra Pal, Venkataraman Sriram, Leonard G. Presta, Tiep Tu Le, Linda Liang
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Patent number: 10836829Abstract: The present invention relates to antibodies or fragments thereof binding to human WT1/HLA. In particular, the present invention relates to antibodies or fragments thereof that have combined improved and/or beneficial properties, and are therefore suited for clinical development.Type: GrantFiled: October 7, 2016Date of Patent: November 17, 2020Assignees: IMMATICS BIOTECHNOLOGIES GMBH, MORPHOSYS AGInventors: Andrea Mahr, Toni Weinschenk, Dominik Maurer, Claudia Wagner, Klaus Felix Hartlepp, Alexandra Kraus
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Patent number: 10836830Abstract: The present disclosure provides multispecific (e.g., bispecific) antibodies that specifically bind to human GITR and/or human OX40 as well as compositions comprising such antibodies. In a specific aspect, the multispecific antibodies specifically bind to human GITR and OX40 and modulate GITR and/or OX40 activity, e.g., enhance, activate, or induce GITR and/or OX40 activity, or reduce, deactivate, or inhibit GITR and/or OX40 activity. The present disclosure also provides methods for treating disorders, such as cancer, by administering a multispecific antibody that specifically binds to human GITR and/or OX40 and modulates GITR and/or OX40 activity, e.g., enhances, activates, or induces GITR and/or OX40 activity. Also provided are methods for treating autoimmune or inflammatory diseases or disorders, by administering a multispecific antibody that specifically binds to human GITR and/or OX40 and modulates GITR and/or OX40 activity, e.g., reduces, deactivates, or inhibits GITR and/or OX40 activity.Type: GrantFiled: June 19, 2020Date of Patent: November 17, 2020Assignees: AGENUS INC., MEMORIAL SLOAN-KETTERING CANCER CENTER, LUDWIG INSTITUTE FOR CANCER RESEARCH LTD.Inventors: Nicholas S. Wilson, Jeremy D. Waight, Gerd Ritter, David Schaer, Daniel Hirschhorn-Cymerman, Taha Merghoub, Ekaterina V. Breous-Nystrom, Volker Seibert, Takemasa Tsuji, Olivier Léger, Dennis J. Underwood, Marc Van Dijk
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Patent number: 10836831Abstract: Anti-PTK7 modulators, including antibodies and derivatives thereof, and methods of using such modulators to treat hyperproliferative disorders are provided.Type: GrantFiled: January 29, 2018Date of Patent: November 17, 2020Assignee: ABBVIE STEMCENTRX LLCInventors: Orit Foord, Scott J. Dylla, Robert A. Stull, Alex Bankovich, Alexandra Leida Liana Lazetic, Jeffrey Bernstein
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Patent number: 10836832Abstract: The invention provides non-human cells and mammals having a genome encoding chimeric antibodies and methods of producing transgenic cells and mammals. Certain aspects of the invention include chimeric antibodies, humanized antibodies, pharmaceutical compositions and kits. Certain aspects of the invention also relate to diagnostic and treatment methods using the antibodies of the invention.Type: GrantFiled: February 13, 2020Date of Patent: November 17, 2020Assignee: ABLEXIS, LLCInventors: Larry Green, Hiroaki Shizuya
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Patent number: 10836833Abstract: The present disclosure is broadly concerned with the field of cancer immunotherapy. For example, the present disclosure generally related to a binding molecule comprising antibody variable light (VL) regions, variable heavy (VH) regions, constant heavy 1 (CH1) regions, and light chain constant (CL) regions that are configured to form two antigen binding Fab regions and an antigen binding Fv region so that the binding molecule binds to two different antigens.Type: GrantFiled: February 14, 2020Date of Patent: November 17, 2020Assignee: Y-BIOLOGICS INC.Inventors: Seil Jang, Bum-Chan Park, Young Woo Park
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Patent number: 10836834Abstract: Provided is a complex obtained by reacting a polymer compound derivative obtained by modifying part of the hydroxy groups or amino groups of a polymer compound having the hydroxy groups or amino groups with a compound represented by the following general formula (I) with one or more kinds of compounds represented by the following general formulae (II) to (V): (I) A-X—Si(Y)nR3-n; (II) M(OR1)nR24-n; (III) Al(OR1)pR23-p; (IV) Mg(OR1)qR22-q; and (V) [Si(OR3)nR43-n]—(X)—[Si(OR5)nR63-n].Type: GrantFiled: July 22, 2016Date of Patent: November 17, 2020Assignee: DAICEL CORPORATIONInventors: Yoshio Okamoto, Chiyo Yamamoto, Tomoyuki Ikai, Masami Kamigaito
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Patent number: 10836835Abstract: Regioselectively substituted cellulose esters having a plurality of aryl-acyl substituents and a plurality of alkyl-acyl substituents are disclosed along with methods for making the same. Such cellulose esters may be suitable for use in optical films, such as optical films having certain Nz values, ?A optical films, and/or +C optical films. Optical films prepared employing such cellulose esters have a variety of commercial applications, such as, for example, as compensation films in liquid crystal displays and/or waveplates in creating circular polarized light used in 3-D technology.Type: GrantFiled: October 28, 2019Date of Patent: November 17, 2020Assignee: Eastman Chemical CompanyInventors: Charles Michael Buchanan, Michael Eugene Donelson, Elizabeth Guzman-Morales, Peter Borden Mackenzie, Bin Wang
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Patent number: 10836836Abstract: Provided are HPMCAS powder having high solubility when dissolved in a solvent and being capable of suppressing generation of undissolved materials; and a method for producing the powder. More specifically, provided is hypromellose acetate succinate powder having an average ratio of L to D of from 2.0 to 3.0, wherein L and D mean maximum and minimum diameters of each particle, respectively. Also provided is a method for producing a hypromellose acetate succinate, comprising the steps of: dissolving hypromellose powder in a solvent, esterifying the dissolved hypromellose with succinic anhydride and acetic anhydride in the presence of a catalyst to obtain a reaction mixture, and mixing the reaction mixture with water to precipitate hypromellose acetate succinate, wherein the reaction mixture just before being mixed with the water has a viscosity of from 100 to 200 Pa·s.Type: GrantFiled: February 13, 2020Date of Patent: November 17, 2020Assignee: Shin-Etsu Chemical Co., Ltd.Inventors: Junichi Matsubara, Naosuke Maruyama, Mitsuhiro Yoshida, Kazuki Kikuchi
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Patent number: 10836837Abstract: A process for treating crop kernels is comprised of the steps of a) soaking kernels in water to produce soaked kernels; b) grinding the soaked kernels; c) treating the soaked kernels in the presence of an effective amount of GH62 polypeptide having arabinofuranosidase activity or a GH43 polypeptide having arabinofuranosidase activity, wherein step c) is performed before, during or after step b).Type: GrantFiled: November 25, 2016Date of Patent: November 17, 2020Assignee: Novozymes A/SInventors: Yi Cao, James Lavigne, Bernardo Vidal, Jr., Thomas Patrick Gibbons, Chee-Leong Soong, Brian R. Scott, Randall Scott Deinhammer, Zhen Long, Michael John Akerman, Xinyu Shen, Yu Zhang
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Patent number: 10836838Abstract: The present invention relates to a novel process for manufacturing a sugar acid for the use in the agricultural market as an adjuvant wherein the process includes the following steps of providing a reactor and introducing a source of nitric acid, water and a source of starch into the reactor to form a mixture and further includes introducing an external heat source to the mixture to ascertain a mixture temperature of at least 70° C. and discontinuing the external heat source once the mixture reaches about 70° C.; and further enabling an internal heat source in the form of an exothermic reaction to occur between the reagents for at least two (2) hours. The invention also relates to the use of the product as obtained from the process.Type: GrantFiled: September 27, 2016Date of Patent: November 17, 2020Assignee: METSON MANUFACTURING CCInventor: Tom Edgecombe Mason
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Patent number: 10836839Abstract: The invention relates to a method for the removal of protein and other impurities from microbial capsular polysaccharides. More particularly, the present invention relates to isolation of microbial capsular polysaccharides in pure form after removal of protein and other impurities.Type: GrantFiled: April 25, 2016Date of Patent: November 17, 2020Assignee: BIOLOGICAL E LIMITEDInventors: Ramesh Venkat Matur, Vivek Babu Kandimalla, Narender Dev Mantena, Mahima Datla, Muthyala Venkateswara Reddy, Kantam Charan
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Patent number: 10836840Abstract: The present invention relates to the field of hyaluronic acid-based gel compositions suitable for use as soft tissue fillers, and more specifically to a novel method for crosslinking such compositions. The present invention further relates to compositions prepared by the novel crosslinking method and their use in cosmetic and therapeutic applications.Type: GrantFiled: June 29, 2016Date of Patent: November 17, 2020Assignee: Merz Pharma GmbH & Co. KGaAInventors: Wolfgang Liebetrau, Franck Villain
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Patent number: 10836841Abstract: A process for forming an epoxidized rubber including dissolving a rubber in a solvent and epoxidizing the rubber in the presence of an epoxidation reagent. The solvent is selected such that the rubber is soluble therein but the epoxidized rubber precipitates.Type: GrantFiled: April 4, 2017Date of Patent: November 17, 2020Assignee: Cooper Tire & Rubber CompanyInventors: Nicolas Sauty, Howard Colvin
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Patent number: 10836842Abstract: The invention relates to a process and system for the continuous polymerization of one or more ?-olefin monomers comprising the steps of: (a) withdrawing fluids from a reactor (b) cooling fluids comprising the withdrawn fluids with a cooling unit (c) introducing the cooled fluids to a separator to separate at least part of the liquid from these fluids to form a liquid phase and a gas/liquid phase (d) introducing the gas/liquid phase below to the reactor below a distribution plate (e) introducing the liquid phase to a settling tank to separate liquid from fines that settle down in the settling tank (f) introducing liquid from the settling tank up stream of the cooling unit.Type: GrantFiled: August 18, 2016Date of Patent: November 17, 2020Assignee: SABIC Global Technologies B.V.Inventors: Yahya Banat, Moughrabiah Wajeeh
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Patent number: 10836843Abstract: An object of the present invention is to provide a dispersion stabilizer for suspension polymerization which satisfies various performance requirements for suspension polymerization of a vinyl-based compound such as vinyl chloride. The present invention relates a modified vinyl alcohol-based polymer having at least one monomer unit represented by a following general formula (I) and a modification rate of from 0.01 mol % to 10 mol %: general formula (1) in which BO represents an oxybutylene unit; EO represents an oxyethylene unit; and each of m and n is a number of repeating unit of the respective oxyalkylene units; 1?m?10; and 1?n?60.Type: GrantFiled: August 22, 2017Date of Patent: November 17, 2020Assignee: DENKA COMPANY LIMITEDInventor: Wataru Watanabe
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Patent number: 10836844Abstract: Polymerizable compositions comprising a redox initiator system is disclosed. The redox initiators comprises a photolabile reducing agent, that photolyzes and initiates the redox cycle. Dental compositions comprising dental resins and the photolabile redox initiator system are also described.Type: GrantFiled: November 23, 2016Date of Patent: November 17, 2020Assignee: 3M Innovative Properties CompanyInventors: Erik M. Townsend, William H. Moser, Shantanu R. Ranade, Kathleen S. Shafer, Michael A. Kropp, Ross E. Behling, Jason D. Clapper
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Patent number: 10836845Abstract: Polyethylene powder comprising at least one additive having: Melt Flow Index (MFI), measured at 190° C. with a load of 2.16 kg in accordance with standard ISO 1133-1:2011, ranging from 0.1 g/10 minutes to 100 g/10 minutes, preferably ranging from 5 g/10 minutes to 35 g/10 minutes; density ranging from 0.890 g/cm3 to 0.965 g/cm3, preferably ranging from 0.940 g/cm3 to 960 g/cm3; bulk density ranging from 0.35 g/cm3 to 0.60 g/cm3, preferably ranging from 0.40 g/cm3 to 0.50 g/cm3; average particle diameter (d50) ranging from 400 ?m to 800 ?m, preferably ranging from 450 ?m to 780 ?m. Said polyethylene powder comprising at least one additive can be advantageously used in rotomolding.Type: GrantFiled: August 25, 2016Date of Patent: November 17, 2020Assignee: Versalis S.P.A.Inventors: Daniele Balducci, Paolo Mariani
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Patent number: 10836846Abstract: The present invention provides modified olefin polymerization catalyst, preparation method thereof, olefin polymerization catalyst system, use thereof and method of preparing polyolefin resin. The catalyst comprises an olefin polymerization catalyst and an organosilane, which is represented by a general formula R1mSiXn(OR2)k, where R1 is a C2-C20 alkyl group and a terminal of R1 has an ?-olefin double bond, a norbornene group, a cycloolefin group or a dicyclopentadiene group, X is a halogen element, R2 is a C1-C20 linear chain, branched chain or isomerized alkyl group, m is an integer from 1-3, n is an integer from 1-3, k is an integer within a range of 0-2, and m+n+k=4. High-performance polyolefin resins, including homopolymerized polyolefin resin with high melt and mechanical strength, polyolefin elastomer with high rubber phase content, and polyolefin elastomer with a rubber phase in a crosslinked structure, etc., can be obtained through polymerization with the catalyst.Type: GrantFiled: October 12, 2015Date of Patent: November 17, 2020Assignees: Institute of Chemistry, Chinese Academy of Sciences, University of Chinese Academy of SciencesInventors: Jinyong Dong, Yawei Qin
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Patent number: 10836847Abstract: A procatalyst for polymerization of olefins, based on a magnesium compound of the formula MgR?R? wherein R? is an alkoxide or aryloxide group and R? is an alkoxide or aryloxide group or halogen that has been reacted with a tetravalent titanium halide, an activator being a monoester and an internal donor of formula B: as described herein. Also described is a polymerization catalyst system comprising the procatalyst, a co-catalyst and optionally an external electron donor; a process of making a polyolefin by contacting an olefin with the catalyst system; a polyolefinobtained by or obtainable by the process; and a polyolefin, preferably a polypropylene, having a molecular weight distribution of between 3 and 15, a molecular weight (Mw) of between 200,000 to 1,000,000 g/mol, a melting temperature of more than 145° C., a value for the xylene solubles of less than 4 wt. % and a shaped article therefrom.Type: GrantFiled: November 28, 2016Date of Patent: November 17, 2020Assignee: SABIC GLOBAL TECHNOLOGIES B.V.Inventors: Bandar Abdullah Almohammadi, Akhlaq Moman, Ahmad Abdullah Alshaiban, Inaamul Haq Siddiqui, Sudhakar R. Padmanabhan
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Patent number: 10836848Abstract: The invention relates to inorganic and polymeric reagents and namely to pipeline transfer of petroleum and petroleum products. The method of production of a reagent for reduction of hydrodynamic resistance of liquid hydrocarbon flow in pipelines includes polymerization of C6-C14 alpha-olefins over catalyst and catalyst activator. Polymerization of C6-C14 alpha-olefins is conducted in the monomer medium with addition from 0.1 to 5 w/w of a saturated alicyclic hydrocarbon of C8-C32 composition and a saturated aliphatic hydrocarbon of C6-C18 composition subject to conversion of monomers from 96.0 to 99.5 w/w, using microspheric titanium trichloride as a catalyst, and a mixture of diethylaluminum chloride and triisobutylaluminum with weight ratio from 1:10 to 10:1 as a catalyst activator. Then a polymer with molecular weight more than 107 atomic mass unit with narrow molecular weight distribution not more than 1.5 with the set ratio of components is produced. Then the polymer is being ground.Type: GrantFiled: September 29, 2017Date of Patent: November 17, 2020Assignee: «MIRRICO» Limited Liability CompanyInventors: Ruslan Vladimirovich Paley, Igor Aleksandrovich Malykhin
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Patent number: 10836849Abstract: A method includes combining an aqueous fluid and an oleaginous fluid to prepare an invert emulsion comprising a polymerizable composition, degassing the invert emulsion under an extensional flow regime through an elongated passageway of an extender and thereby removing oxygen to produce a degassed invert emulsion. A flow rate of the invert emulsion and a diameter of the elongated passageway are sufficient to achieve a Reynolds number of 20,000 or greater. The method also includes transferring at least a portion of the degassed invert emulsion to the second extender at one or more time intervals and returning the portion of the degassed invert emulsion to the reactor, and isolating a polymer product from the degassed invert emulsion. A flow rate of the invert emulsion and a diameter of the elongated passageway are sufficient to achieve a Reynolds number of 20,000 or greater.Type: GrantFiled: June 12, 2020Date of Patent: November 17, 2020Assignee: PfP Industries, LLCInventors: Asoke Kumar Deysarkar, Michael Joseph Callanan, IV, Robert Ray McDaniel, Brian James Keola DeCaires
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Patent number: 10836850Abstract: The present invention provides a catalyst composition including a functionalizing agent of the following Formula 1 together with a rare earth metal compound, an alkylating agent, and a halogen compound, having good catalytic activity and polymerization reactivity and useful for the preparation of a conjugated diene-based polymer having high linearity and excellent processability, and a conjugated diene-based polymer prepared using the catalyst composition. (X1)a—N—(X2)3-a??[Formula 1] In Formula 1, a, X1, and X2 are the same as defined in the disclosure.Type: GrantFiled: December 19, 2019Date of Patent: November 17, 2020Assignee: LG Chem, Ltd.Inventors: Suk Youn Kang, Hyo Jin Bae, Sung Ho Park, Jeong Heon Ahn, Ji Eun Kim, Kyoung Hwan Oh
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Patent number: 10836851Abstract: A method for altering the melt flow ratio (MFR) of ethylene copolymers made in a gas phase reactor using a supported Ziegler-Natta catalyst treated with a catalyst modifier. The method involves changing the amount of the catalyst modifier added to the supported Ziegler-Natta polymerization catalyst to effect changes in the MFR of the resulting polymer.Type: GrantFiled: August 30, 2018Date of Patent: November 17, 2020Assignee: NOVA Chemicals (International) S.A.Inventors: Victoria Ker, Peter Phung Minh Hoang
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Patent number: 10836852Abstract: A composition comprising an ethylene-based polymer, wherein the ethylene-based polymer comprises the following properties: a) an Mw(abs) from 130,000 to 162,000 g/mol; b) a melt index (I2) from 1.5 to 3.0 g/10 min; c) an ADF LS from 0.350 to 0.450 for molecular weight ?500,000 g/mol.Type: GrantFiled: March 19, 2018Date of Patent: November 17, 2020Assignee: Dow Global Technologies LLCInventors: Teresa P. Karjala, Lori L. Kardos, David T. Gillespie, Zachary L. Polk
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Patent number: 10836853Abstract: A crack-resistant article comprising a diene terpolymer, the diene terpolymer comprising (or consisting essentially of) from 0.01 wt % to 10.0 wt % diene derived units, and 1.0 wt % to 20 wt % of C4 to C10 ?-olefin derived units based on the weight of the diene terpolymer, wherein the diene terpolymer: a) has a g?vis of less than 0.90; b) has an Mw within a range of from 100,000 g/mol to 500,000 g/mol; c) has an Mw/Mn within the range of from 3.5 to 12.0; and d) an Mz/Mn of greater than 7.0. Inventive articles comprise a blend of a relatively high density linear polyethylene and the diene terpolymer.Type: GrantFiled: January 14, 2015Date of Patent: November 17, 2020Assignee: ExxonMobil Chemical Patents Inc.Inventors: Jianya Cheng, Pradeep P. Shirodkar, Peijun Jiang, Andrew Takacs
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Patent number: 10836854Abstract: This invention relates to monodisperse cross-linked hydrogel polymer particles comprising a polymer formed from (a) a hydrophilic vinylic monomer; and (b) a crosslinker comprising at least two vinyl groups. The invention also relates to monodisperse seed particles with a Z-average diameter of from 100 nm to 1500 nm that comprise a plurality of non-crosslinked oligomers of poly N,N-dimethylacrylamide. Also provided are methods of forming the monodisperse cross-linked hydrogel polymer particles and monodisperse seed particles.Type: GrantFiled: July 19, 2016Date of Patent: November 17, 2020Assignees: SINTEF, LIFE TECHNOLOGIES ASInventors: Geir Fonnum, Nils Pontus Lundberg, Muhammed Talha Gokmen, Synne Larsen, Wilhelm Glomm, Heidi Johnsen, Ruth Schmid, Lars Kilaas
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Patent number: 10836855Abstract: A method to produce a polymer gel includes dissolving precursors in a solvent to form a precursor solution, the precursors including polymer precursors, a stable free radical, one or more initiating radicals, and one or more stable free radical control agents, and heating the precursor solution to a temperature of polymerization to produce a cross-linked gel. A dried polymer aerogel has a Brunauer-Emmett Teller (BET) surface area over 100 m2/g, porosity of greater than 10%, visible transparency greater than 20%, color rendering index of over 20%, and average pore size of less than 100 nm.Type: GrantFiled: July 26, 2018Date of Patent: November 17, 2020Assignees: PALO ALTO RESEARCH CENTER INCORPORATED, XEROX CORPORATIONInventors: Mahati Chintapalli, Barkev Keoshkerian, Alec Ho, Gabriel Iftime, Quentin Van Overmeere, Eli Bulger
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Patent number: 10836856Abstract: Paint, clear coat, stain, adhesive, or other aqueous formulations that contain at least one [(dimethylamino)alkyl]-imino-dialcohol and a alkyd emulsion, polymer latex or polyurethane dispersion binder. Also disclosed are methods for manufacture and use of these formulations. The [(dimethylamino)alkyl]-imino-dialcohols provide aqueous formulations having low odor and reduced volatile organic compounds (VOC). The [(dimethylamino)alkyl]-imino-dialcohols also aid in dispersing pigment and other solids so less co-dispersant is needed for aqueous paint or coating formulations.Type: GrantFiled: May 20, 2015Date of Patent: November 17, 2020Assignee: RHODIA OPERATIONSInventors: Lichang Zhou, Derek Pakenham, Ayaz Khan, Hervé´ Adam, Jose P. Ruiz
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Patent number: 10836857Abstract: The invention relates to processes for producing an amine adduct in which in a 1st step a polyamine (A) is reacted with a monomer (C) in the form of an epoxide, an oxetane or a cyclic carbonate to afford an (intermediate) product (AC) which in a subsequent 2nd step is reacted with a monomer (B) in the form of a lactone, an acyclic hydroxycarboxylic acid or a hydroxy-functional acyclic ester to afford a (descendant) product (ACB), wherein the polyamine (A) in each case comprises at least three amino groups (A+) selected from primary and secondary amino groups and each capable of reaction with the monomers (C) and (B), the monomer (C) contains no ester groups, no carboxyl groups and no primary or secondary amino groups and in the 1st step with ring opening and formation of a hydroxyl group (H+) reacts with one of the amino groups (A+) of the polyamine (A) with additional formation of either a carbon-nitrogen bond or a urethane bond, the monomer (B) contains no primary or secondary amino groups, has a molecularType: GrantFiled: September 11, 2017Date of Patent: November 17, 2020Assignee: BYK-CHEMIE GMBHInventors: Irina Giebelhaus, Andreas Okkel, Wolfgang Pritschins
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Patent number: 10836858Abstract: The invention relates to a method for producing polyether carbonate polyols by adding alkylene oxides and carbon dioxide to an H-functional starter substance in the presence of a double metal cyanide (DMC) catalyst or in the presence of a metal complex catalyst based on the metals zinc and/or cobalt, wherein (?) alkylene oxide and carbon dioxide are added to an H-functional starter substance in a reactor with a total pressure (absolute) of 5 to 120 bar in the presence of a double metal cyanide catalyst or in the presence of a metal complex catalyst based on the metals zinc and/or cobalt, and a reaction mixture containing the polyether carbonate polyol is obtained, (?) the reaction mixture obtained in step (?) remains in the reactor or is optionally continuously transferred to a downstream reactor at a starting total pressure (absolute) of 5 to 120 bar, the content of free alkylene oxide in the reaction mixture being reduced in the course of a downstream reaction in each case, and the total pressure (absolute)Type: GrantFiled: June 20, 2017Date of Patent: November 17, 2020Assignee: Covestro Deutschland AGInventors: Jörg Hofmann, Urs Rauwald, Stefanie Braun, Matthias Wohak, Hartmut Nefzger, Nicole Welsch, Aurel Wolf, Michael Traving, Lars Krueger
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Patent number: 10836859Abstract: In one aspect, the present disclosure encompasses polymerization systems for the copolymerization of CO2 and epoxides comprising 1) a catalyst including a metal coordination compound having a permanent ligand set and at least one ligand that is a polymerization initiator, and 2) a chain transfer agent having two or more sites that can initiate polymerization. In a second aspect, the present disclosure encompasses methods for the synthesis of polycarbonate polyols using the inventive polymerization systems. In a third aspect, the present disclosure encompasses polycarbonate polyol compositions characterized in that the polymer chains have a high percentage of —OH end groups and a high percentage of carbonate linkages. The compositions are further characterized in that they contain polymer chains having an embedded polyfunctional moiety linked to a plurality of individual polycarbonate chains.Type: GrantFiled: April 9, 2019Date of Patent: November 17, 2020Assignee: Saudi Aramco Technologies CompanyInventors: Scott D. Allen, Geoffrey W. Coates, Anna E. Cherian, Chris A. Simoneau, Alexei A. Gridnev, Jay J. Farmer
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Patent number: 10836860Abstract: The present invention relates to an organic zinc catalyst which exhibits more improved catalytic activity than conventional organic zinc catalysts during a polymerization process for the preparation of a polyalkylene carbonate resin and is capable of preventing an aggregation phenomenon during a reaction, a method for preparing the same, and a method for preparing a polyalkylene carbonate resin using the organic zinc catalyst. The method for preparing an organic zinc catalyst includes the step of reacting a zinc precursor with a dicarboxylic acid in the presence of a polyether derivative to form a zinc dicarboxylate-based catalyst.Type: GrantFiled: March 19, 2020Date of Patent: November 17, 2020Assignee: LG CHEM, LTD.Inventors: Sung-Kyoung Kim, Seung Young Park
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Patent number: 10836861Abstract: A polyalkylene glycol derivative with a minimal impurity content is prepared simply by the steps of reacting a compound having formula (III-I) or (III-II) with an electrophile having formula (IV) in the presence of an optional basic compound, to form a reaction solution containing a compound having formula (V), and passing the reaction solution through a column of cation and anion exchange resins to remove water-soluble impurities, for thereby purifying the desired polyalkylene glycol derivative.Type: GrantFiled: July 23, 2018Date of Patent: November 17, 2020Assignee: SHIN-ETSU CHEMICAL CO., LTD.Inventors: Shiori Nonaka, Yuki Suka, Yuji Harada
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Patent number: 10836862Abstract: To provide a surface treatment agent capable of imparting excellent water/oil repellency, fingerprint stain removability, abrasion resistance and lubricity to the surface of a substrate. A surface treatment agent for a substrate, comprising a perfluoropolyether group-containing phosphate compound, a coating agent comprising the surface treatment agent and a liquid medium, and a substrate having a surface layer formed from the surface treatment agent or the coating agent.Type: GrantFiled: October 9, 2018Date of Patent: November 17, 2020Assignee: AGC Inc.Inventor: Kiyotaka Takao
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Patent number: 10836863Abstract: A copolyamide composition comprising a statistical copolyamide containing 70-99 wt % of diamine and dicarboxylic acid repeat units and 1-30 wt % of lactam or AA-BB repeat units, whereby incorporation of the comonomer lactam or AA-BB unit reduces the crystallization rate (longer crystallization times) while maintaining (1) high melting point, (2) low potential plate out, (3) low oxygen permeation, (4) high tensile strength and (5) puncture/tear resistance.Type: GrantFiled: September 28, 2016Date of Patent: November 17, 2020Assignee: Ascend Performance Materials Operations LLCInventors: Jacob G. Ray, Tiffany Hristopoulos, Steven C. Manning, Tariq S. Oweimreen, Scott E. Powers, Askim Senyurt
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Patent number: 10836864Abstract: Techniques regarding killing of a pathogen with one or more ionene compositions having antimicrobial functionality are provided. For example, one or more embodiments can comprise a method, which can comprise contacting a Mycobacterium tuberculosis microbe with a chemical compound. The chemical compound can comprise an ionene unit. Also, the ionene unit can comprise a cation distributed along a molecular backbone. The ionene unit can have antimicrobial functionality. The method can further comprise electrostatically disrupting a membrane of the Mycobacterium tuberculosis microbe in response to the contacting.Type: GrantFiled: December 12, 2017Date of Patent: November 17, 2020Assignees: INTERNATIONAL BUSINESS MACHINES CORPORATION, AGENCY FOR SCIENCE, TECHNOLOGY AND RESEARCHInventors: Mareva B. Fevre, James L. Hedrick, Nathaniel H. Park, Victoria A. Piunova, Pang Kern Jeremy Tan, Chuan Yang, Yi Yan Yang
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Patent number: 10836865Abstract: Disclosed are compositions and methods of preparing ionic polyamides. Also disclosed are compositions and methods of preparing ionic polyamide-imides. Additionally, disclosed herein are compositions comprising the ionic polyamides or polyamide-imides. The compositions comprising the ionic polyamides or polyamide-imides can include an ionic liquid. The disclosed polyamides and polyamide-imides can be utilized for three-dimensional printing or to capture gases.Type: GrantFiled: February 14, 2018Date of Patent: November 17, 2020Assignee: The Board of Trustees of The University of AlabamaInventors: Jason Edward Bara, Kathryn E. O'Harra
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Patent number: 10836866Abstract: Sulfur-containing polymeric particles having a high sulfur content can be prepared using emulsion polymerization. The sulfur-containing polymeric particles are useful in aerospace coatings and sealants.Type: GrantFiled: May 21, 2019Date of Patent: November 17, 2020Assignee: PRC-DeSoto International, Inc.Inventors: Amy Liane Toolis, Lawrence G. Anderson
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Patent number: 10836867Abstract: The invention provides for a composition comprising elemental platinum and/or at least one platinum-containing compound, where said platinum has a positive oxidation state, and one or more organic compounds comprising carbon atoms, hydrogen atoms and at least two oxygen atoms, wherein at least one of said compounds comprises at least one olefinic unsaturation, characterized in that said composition comprises a proportion of organic compounds comprising carbon atoms, hydrogen atoms and at least two oxygen atoms of from 50.0 to 99.9 wt % and a proportion of the sum of elemental platinum and platinum-containing compounds of from 0.1 to 50.0 wt % in each case based on the composition, with the proviso that the proportions of organic compounds comprising carbon atoms, hydrogen atoms and at least two oxygen atoms and of elemental platinum and platinum-containing compounds sum to at least 90 wt % based on the composition and the proviso that the olefinic unsaturation content is at least 0.Type: GrantFiled: June 17, 2015Date of Patent: November 17, 2020Assignee: Evonik Operations GmbHInventor: Wilfried Knott
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Patent number: 10836868Abstract: A conversion product which has at least one aliphatic amidine or guanidine group and at least one polysiloxane radical, and the use of the conversion product as a catalyst for cross-linking hardenable compositions, in particular based on polymers containing silane groups. The conversion product is largely odor-free, non-volatile, and of low toxicity. The conversion product accelerates the cross-linking of such compositions surprisingly well, does not impair the stability of such compositions in storage, and is very highly compatible, which means that such compositions do not tend toward separation or migration or evaporation of the catalyst.Type: GrantFiled: December 14, 2016Date of Patent: November 17, 2020Assignee: SIKA TECHNOLOGY AGInventors: Rita Cannas, Urs Burckhardt
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Patent number: 10836869Abstract: The present disclosure relates to the field of polymer chemistry and more particularly to multiblock copolymers comprising a poly(sarcosine) block and a D,L-mixed poly(amino acid) block and uses thereof.Type: GrantFiled: January 10, 2020Date of Patent: November 17, 2020Assignee: Tyndall Formulation Services, LLCInventors: Kevin N. Sill, Bradford T. Sullivan
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Patent number: 10836870Abstract: A copolyester resin for preparing a low-melting copolyester fiber is made by compounding a first copolyester with a second copolyester in a weight ratio of the first copolyester to the second copolyester of from 94:6 to 98:2. The first copolyester is obtained by subjecting terephthalic acid, ethylene glycol, isophthalic acid, and diethylene glycol to a copolymerization, and the second copolyester is obtained by subjecting terephthalic acid, ethylene glycol, and neopentyl glycol to another copolymerization.Type: GrantFiled: May 13, 2019Date of Patent: November 17, 2020Assignee: FAR EASTERN NEW CENTURY CORPORATIONInventors: Hsiang-Chin Tsai, Shih-Hsiung Chen, Lewis Yu
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Patent number: 10836871Abstract: The present invention relates to a polymer preparation method for preparing water-soluble cationic polymers P1 wherein the halides content is reduced, as well as to the use of these polymers as additives in compositions that are based on inorganic mineral binders or in the treatment of aqueous open, semi-closed, or closed circuits.Type: GrantFiled: September 20, 2017Date of Patent: November 17, 2020Assignee: S.P.C.M. SAInventors: Johann Kieffer, Cédrick Favero, Christophe Roux
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Patent number: 10836872Abstract: A visible light-curable chitosan derivative, a hydrogel thereof, and a preparation method therefor are disclosed. The visible light-curable glycol chitosan derivative is curable by light in the visible light range and has a wound healing activity. A hydrogel obtained by cross-linkage of the visible light-curable glycol chitosan derivative using visible light has a wound healing effect per se, and further, a hydrogel obtained by cross-linkage in a combination of one or more growth factors has an excellent wound healing effect. In addition, a glycol chitosan hydrogel that can prevent the denaturation of contained drugs and growth factors due to the cross-linkage by visible light and is optimized for application to a wet dressing dosage form can be prepared.Type: GrantFiled: June 29, 2020Date of Patent: November 17, 2020Assignee: THE CATHOLIC UNIVERSITY OF KOREA INDUSTRY-ACADEMY COOPERATIONInventors: Dae Hyeok Yang, Heung-Jae Chun, Dong In Seo
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Patent number: 10836873Abstract: Polymer matrix composite comprising a porous polymeric network; and a plurality of thermally insulating particles distributed within the polymeric network structure, wherein the thermally insulating particles are present in a range from 15 to 99 weight percent, based on the total weight of the thermally insulating particles and the polymer (excluding the solvent); and wherein the polymer matrix composite has a density not greater than 3 g/cm3; and methods for making the same. The polymer matrix composites are useful, for example, in electronic devices.Type: GrantFiled: November 15, 2018Date of Patent: November 17, 2020Assignee: 3M INNOVATIVE PROPERTIES COMPANYInventors: Derek J. Dehn, Clinton P. Waller, Jr., Bharat R. Acharya