Patents Examined by Michael M Bernshteyn
  • Patent number: 11572343
    Abstract: A perfluorodiacyl peroxide represented by the following formula (1): (C5F11COO)2 ??(1). Also disclosed is a solution containing the perfluorodiacyl peroxide, a polymerization initiator containing the perfluorodiacyl peroxide, a method for producing a polymer which includes polymerizing a radically polymerizable monomer with the perfluorodiacyl peroxide, and a perfluoroacyl chloride represent by the following formula (2): C5F11COCl (2).
    Type: Grant
    Filed: January 25, 2019
    Date of Patent: February 7, 2023
    Assignee: DAIKIN INDUSTRIES, LTD.
    Inventor: Tadaharu Isaka
  • Patent number: 11566116
    Abstract: Disclosed herein are methods of making active, food-grade packaging resins using a reactive extrusion step that involves reacting a polymeric material with a ligand and one of a cross-linking agent and a radical initiator in an extruder, under temperature and pressure conditions effective to cause covalent binding of the ligand to the polymeric material by a linker that is the reaction product of the cross-linking agent or by direct bond formation between the ligand and the polymeric material, and then extruding the active, food-grade packaging resin. Also disclosed are the active packaging resins obtained from such methods, methods of forming food packaging materials from the active packaging resins, the food packaging materials that contain the active packaging resins, and methods of packaging perishable food in those food packaging materials.
    Type: Grant
    Filed: August 19, 2020
    Date of Patent: January 31, 2023
    Assignee: CORNELL UNIVERSITY
    Inventors: Julie M. Goddard, Joshua Herskovitz
  • Patent number: 11548957
    Abstract: Apparatuses and processes that produce multimodal polyolefins, and in particular, polyethylene resins, are disclosed herein. This is accomplished by using two reactors in series, where one of the reactors is a multi-zone circulating reactor that can circulate polyolefin particles through two polymerization zones optionally having two different flow regimes so that the final multimodal polyolefin has improved product properties and improved product homogeneity.
    Type: Grant
    Filed: October 20, 2020
    Date of Patent: January 10, 2023
    Assignee: Chevron Phillips Chemical Company LP
    Inventors: Joseph A. Curren, Rebecca A. Gonzales, Scott E. Kufeld, Joel A. Mutchler, Eric J. Netemeyer, Jamie N. Sutherland, Paul J. Deslauriers, Jeffrey S. Fodor
  • Patent number: 11535703
    Abstract: The present disclosure relates to synthesis of porous polymer networks and applications of such materials. The present disclosure relates to a method of fabricating of a porous polymer network comprising: (a) providing: (i) a first reactant comprising a plurality of compounds comprising at least one acetyl group, said plurality of compounds comprising at least one compound type, and (ii) a second reactant comprising an alkylsulfonic acid, and (b) creating a solution of said reactants, (c) casting said solution in a form, and (d) treating said solution under such conditions so as to produce a porous polymer network.
    Type: Grant
    Filed: January 28, 2021
    Date of Patent: December 27, 2022
    Assignee: THE TEXAS A&M UNIVERSITY SYSTEM
    Inventors: Lei Fang, Zi-Hao Guo, Chenxu Wang, Qiang Zhang, Hong-Cai Zhou
  • Patent number: 11535957
    Abstract: The present invention relates to a method for producing a polyacrylonitrile-based fiber, wherein the method polymerizes a monomer mixture including an acrylonitrile-based monomer, a carboxylic acid-based comonomer, and an acrylate-based comonomer, wherein the acrylate-based comonomer includes the steps of producing a polyacrylonitrile-based copolymer so as to be included in an amount of 4 to 20 parts by weight based on 100 parts by weight of the monomer mixture, fiberizing the polyacrylonitrile-based copolymer, oxidizing and stabilizing the fiberized polyacrylonitrile-based copolymer, which may control the oxidation stabilization reaction, particularly the cyclization reaction. Accordingly, the energy consumption of the oxidation stabilization reaction may be reduced, economical efficiency of the production of polyacrylonitrile-based fiber may be obtained, and the physical and mechanical properties of the carbon fiber may be improved.
    Type: Grant
    Filed: November 22, 2017
    Date of Patent: December 27, 2022
    Assignee: LG CHEM, LTD.
    Inventors: Jeong Kyu Lee, Chang Hun Kim, In Young Song, Jeong Hun Cho, Jong Soo Do, Sung Joon Oh, Joon Hee Cho
  • Patent number: 11535691
    Abstract: Provided are a macromolecular material that exhibits high toughness and self-healing properties, and that can be produced by a simple process, as well as a method for producing the material. The macromolecular material contains a crosslinked polymer crosslinked by the interaction between a host group and a guest group. The crosslinked polymer contains a repeating structural unit represented by the following formula (1a) and a repeating structural unit represented by the following formula (2a).
    Type: Grant
    Filed: February 28, 2017
    Date of Patent: December 27, 2022
    Assignee: Osaka University
    Inventors: Akira Harada, Yoshinori Takashima, Kazuhisa Iwaso
  • Patent number: 11535692
    Abstract: Styrene-free unsaturated polyester resin and vinyl ester resin compositions are provided which contain low amounts of hazardous air pollutants, good mechanical and physical properties, and good corrosion resistant characteristics. The resin systems are such that minimal or no component is leachable after completion of the curing process. The resins are suitable for repair of sewer pipes and potable water pipe systems as part of a cured-in-place pipe application. Additionally, the invention is suitable for relining of storage tanks. A process for the manufacture of these resin compositions is also provided.
    Type: Grant
    Filed: February 6, 2019
    Date of Patent: December 27, 2022
    Inventors: Gregory C Miller, William Moore, Luciana Kinnin, Phillip Waltman, John McAlvin
  • Patent number: 11530283
    Abstract: A laminate and a method for producing a patterned substrate using the same are disclosed herein. In some embodiments, a laminate includes a substrate, and a stripe pattern having first and second polymer lines alternately and repeatedly disposed on the substrate, wherein the first polymer line comprises a first polymer having a first polymerized unit having a ring structure connected to a main chain and a second polymerized unit represented by Formula 1. The method may be applied to manufacture of devices, such as electronic devices, or of applications, such as integrated optical systems, guidance and detection patterns of magnetic domain memories, flat panel displays, liquid crystal displays (LCDs), thin film magnetic heads or organic light emitting diodes, and may be used to build a pattern on a surface used in manufacture of discrete track media, such as integrated circuits, bit-patterned media and/or magnetic storage devices such as hard drives.
    Type: Grant
    Filed: September 17, 2018
    Date of Patent: December 20, 2022
    Inventors: Na Na Kang, Se Jin Ku, Mi Sook Lee, Eung Chang Lee, Eun Young Choi, Sung Soo Yoon, No Jin Park, Je Gwon Lee, Hyung Ju Ryu, Yoon Hyung Hur
  • Patent number: 11525047
    Abstract: Poly(acrylic acid)-based superabsorbent polymer (SAP) in a feed stream is converted into poly(acrylic acid) (PAA) in an extensional flow device. The total energy used to degrade the SAP into PAA is less than about 50 MJ/kg SAP.
    Type: Grant
    Filed: August 21, 2020
    Date of Patent: December 13, 2022
    Assignee: The Procter & Gamble Company
    Inventors: Dimitris Ioannis Collias, John Andrew McDaniel, Gary Wayne Gilbertson, Martin Ian James, Arsen Arsenov Simonyan
  • Patent number: 11525028
    Abstract: The thermoplastic polyurethane (TPU) compositions described herein have biodegradable and/or bioabsorbable hard and soft segments. The TPU hard segment can be formed from a polyisocyanate and a 2,5-substituted diketopiperazine.
    Type: Grant
    Filed: August 6, 2020
    Date of Patent: December 13, 2022
    Assignee: Lubrizol Advanced Materials, Inc.
    Inventors: Cathrin G. Kirchhoefer, Andrew P. Dove, Anthony J. Walder
  • Patent number: 11524896
    Abstract: A purification method for an aqueous hydrogen peroxide solution, includes passing the aqueous hydrogen peroxide solution through a first H-form strong cation exchange resin column 1, a salt-form strong anion exchange resin column 2 and a second H-form strong cation exchange resin column 3. An H-form strong cation exchange resin having crosslinking of 6% or less, an H-form strong cation exchange resin having crosslinking of 9% or more, or an H-form strong cation exchange resin produced by steps (a) and (b) is used as an H-form strong cation exchange resin packed in the second H-form strong cation exchange resin column 3: (a) copolymerizing a monovinyl aromatic monomer with a crosslinkable aromatic monomer having a non-polymerizable impurity content of 3% by weight or less therein using a predetermined amount of a specified radical polymerization initiator at a predetermined polymerization temperature to obtain a crosslinked copolymer; and (b) sulfonating the crosslinked copolymer.
    Type: Grant
    Filed: September 19, 2017
    Date of Patent: December 13, 2022
    Assignee: KURITA WATER INDUSTRIES LTD.
    Inventors: Ikunori Yokoi, Yoshiaki Ide, Takaaki Chuuman
  • Patent number: 11511237
    Abstract: A polymerizable composition for forming an ion-exchange resin precursor, the polymerizable composition containing a monomer component and polyethylene particles in an amount of 50 to 120 parts by mass per 100 parts by mass of the monomer component, wherein the monomer component contains an aromatic monomer for introducing ion-exchange groups and a nitrogen-containing aliphatic monomer, the nitrogen-containing aliphatic monomer being present in an amount of 10 to 35% by mass in said monomer component. An ion-exchange membrane is produced by applying the polymerizable composition onto a polyolefin type filament base material and polymerizing the polymerizable composition to form an ion-exchange resin precursor and, thereafter, introducing ion-exchange groups into the precursor.
    Type: Grant
    Filed: March 9, 2021
    Date of Patent: November 29, 2022
    Assignee: ASTOM CORPORATION
    Inventors: Maki Kinoshita, Masayuki Kishino, Shunichiro Nakatsukasa, Kenji Fukuta
  • Patent number: 11512215
    Abstract: Fusing nanowire inks are described that can also comprise a hydrophilic polymer binder, such as a cellulose based binder. The fusing nanowire inks can be deposited onto a substrate surface and dried to drive the fusing process. Transparent conductive films can be formed with desirable properties.
    Type: Grant
    Filed: November 19, 2020
    Date of Patent: November 29, 2022
    Assignee: C3 Nano, Inc.
    Inventors: Ying-Syi Li, Xiqiang Yang, Yu Kambe, Xiaofeng Chen, Hua Gu, Steven Michael Lam, Melanie Maniko Inouye, Arthur Yung-Chi Cheng, Alex Da Zhang Tan, Christopher Steven Scully, Ajay Virkar
  • Patent number: 11512156
    Abstract: Poly(aryl piperidinium) polymers with pendant cationic groups are provided which have an alkaline-stable cation, piperidinium, introduced into a rigid aromatic polymer backbone free of ether bonds. Hydroxide exchange membranes or hydroxide exchange ionomers formed from these polymers exhibit superior chemical stability, hydroxide conductivity, decreased water uptake, good solubility in selected solvents, and improved mechanical properties in an ambient dry state as compared to conventional hydroxide exchange membranes or ionomers. Hydroxide exchange membrane fuel cells comprising the poly(aryl piperidinium) polymers with pendant cationic groups exhibit enhanced performance and durability at relatively high temperatures.
    Type: Grant
    Filed: September 28, 2018
    Date of Patent: November 29, 2022
    Assignee: University of Delaware
    Inventors: Yushan Yan, Keda Hu, Junhua Wang, Lan Wang, Bingjun Xu, Yun Zhao
  • Patent number: 11504948
    Abstract: A laminated glazing with at least one step-shaped functional portion comprising two stack of components, the main stack of components in which the alteration of its properties is not desirable, and a second stack of components comprising a functional layer.
    Type: Grant
    Filed: March 29, 2019
    Date of Patent: November 22, 2022
    Assignee: AGP America S.A.
    Inventors: Mario Arturo Mannheim Astete, Andres Fernando Sarmiento Santos, Vincenzo Mannino, Juan Pablo Suárez, Laura Granados Caro, Joel Benavides
  • Patent number: 11505659
    Abstract: A method of producing treated ion exchange resin material includes exposing an enclosed vessel containing ion exchange resin and a pre-treatment solution to high energy radiation. The treated ion exchange resin material has reduced organic impurities or total organic carbon (TOC).
    Type: Grant
    Filed: December 2, 2020
    Date of Patent: November 22, 2022
    Assignee: Evoqua Water Technologies LLC
    Inventor: Marty Wilkes
  • Patent number: 11498982
    Abstract: A method for concentrating rubber emulsion and a product prepared by the method are provided, the method includes: a concentrated latex is obtained by separating a superabsorbent resin added in advance into a rubber emulsion with a solid content of 0.01-70% after stirring and concentrating the resin-added rubber emulsion. The method requires simple equipment and consumes less energy, and the prepared polymer emulsion has a solid content up to 76%; the superabsorbent resin adopted herein is reusable after drying, which therefore effectively reduces the production cost; natural latex concentrated by the method has rather high yields of dry rubber and little wastewater production; products prepared from the concentrated natural latex have excellent mechanical property, aging resistance and adhesive property; and concentrating natural latex according to this method does not require advance agglomeration, which reduces the production procedures and improves the production efficiency significantly.
    Type: Grant
    Filed: December 15, 2021
    Date of Patent: November 15, 2022
    Assignee: AGRICULTURAL PRODUCT PROCESSING RESEARCH INSTITUTE, CHINESE ACADEMY OF TROPICAL AGRICULTURAL SCIENCES
    Inventors: Jinlong Tao, Na Kong, Jizhen Zhang, Zhifeng Li, Jihua Li, Zirong Luo, Mingzhe Lv, Pengfei Zhao
  • Patent number: 11499049
    Abstract: Disclosed are apparatuses and methods including incorporation of additives into a bulk materials container by coating, impregnating, or otherwise applying the additives to at least a portion of the container and/or the material comprising the container. The container may be intended for containing bulk material used in a batch or continuous process, where the container can be consumed by the process along with the bulk material. The additives incorporated into the container can be substances that may be used by the process. The additives can modify the process. The additives can modify and/or condition the product being formed by the process.
    Type: Grant
    Filed: May 29, 2020
    Date of Patent: November 15, 2022
    Assignee: Ennis-Flint, Inc.
    Inventors: Chris Davies, Mark Terry
  • Patent number: 11493847
    Abstract: The present invention relates to a structure for a quantum dot barrier rib and a process for preparing the same. The structure for a quantum dot barrier rib of the present invention comprises a cured film having a uniform film thickness and an appropriate range of film thickness. Here, the reflectance RSCI measured by the SCI (specular component included) method and the reflectance RSCE measured by the SCE (specular component excluded) method are reduced, and the ratio between them (RSCE/RSCI) is appropriately adjusted, so that it is possible to satisfy such characteristics as high light-shielding property and low reflectance at the same time while the resolution and pattern characteristics are maintained to be excellent. In addition, when the structure for a quantum dot barrier rib is prepared, it is possible to form a multilayer pattern having a uniform film thickness suitable for the quantum dot barrier ribs in a single development process. Thus, it can be advantageously used for a quantum dot display.
    Type: Grant
    Filed: May 20, 2020
    Date of Patent: November 8, 2022
    Inventors: Seung-Keun Kim, Hyung-Tak Jeon, Kyu Cheol Lee, Kyung-Jae Park, Seung-Kyu Song
  • Patent number: 11482713
    Abstract: The present disclosure is directed to triblock copolymer based anion exchange membranes (AEMs) and methods for making same. The membranes are useful as separators in electrochemical devices, such as fuel cells, electrolyzers, water desalination systems, and redox flow batteries.
    Type: Grant
    Filed: December 7, 2020
    Date of Patent: October 25, 2022
    Assignee: Washington University
    Inventors: Zhongyang Wang, Javier Parrondo, Vijay K. Ramani