Si-o-c Bonded Compound Patents (Class 106/287.16)
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Patent number: 12209105Abstract: Provided is a plasma enhanced atomic layer deposition (PEALD) process for depositing etch-resistant SiOCN films. These films provide improved growth rate, improved step coverage and excellent etch resistance to wet etchants and post-deposition plasma treatments containing O2 and NH3 co-reactants. This PEALD process relies on one or more precursors reacting in tandem with the plasma exposure to deposit the etch-resistant thin-films of SiOCN. The films display excellent resistance to wet etching with dilute aqueous HF solutions, both after deposition and after post-deposition plasma treatment(s). Accordingly, these films are expected to display excellent stability towards post-deposition fabrication steps utilized during device manufacturing and build.Type: GrantFiled: September 1, 2022Date of Patent: January 28, 2025Assignee: ENTEGRIS, INC.Inventors: Philip S. H. Chen, Eric Condo, Bryan C. Hendrix, Thomas H. Baum, David Kuiper
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Patent number: 11571897Abstract: A method for producing a liquid transport apparatus is disclosed. The liquid transport apparatus includes a pressure chamber plate, a ceramics layer formed on a surface of the pressure chamber plate, a piezoelectric layer formed on the ceramics layer, and an electrode formed on the piezoelectric layer. The ceramics layer is formed by heating an insulating ceramic material at a temperature lower than an annealing temperature of the piezoelectric layer. Accordingly, the atoms of the pressure chamber plate are suppressed from being diffused into the piezoelectric layer.Type: GrantFiled: March 9, 2017Date of Patent: February 7, 2023Assignee: Brother Kogyo Kabushiki KaishaInventor: Hiroto Sugahara
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Patent number: 11466038Abstract: Provided is a plasma enhanced atomic layer deposition (PEALD) process for depositing etch-resistant SiOCN films. These films provide improved growth rate, improved step coverage and excellent etch resistance to wet etchants and post-deposition plasma treatments containing O2 and NH3 co-reactants. This PEALD process relies on one or more precursors reacting in tandem with the plasma exposure to deposit the etch-resistant thin-films of SiOCN. The films display excellent resistance to wet etching with dilute aqueous HF solutions, both after deposition and after post-deposition plasma treatment(s). Accordingly, these films are expected to display excellent stability towards post-deposition fabrication steps utilized during device manufacturing and build.Type: GrantFiled: June 11, 2020Date of Patent: October 11, 2022Assignee: ENTEGRIS, INC.Inventors: Philip S. H. Chen, Eric Condo, Bryan C. Hendrix, Thomas H. Baum, David Kuiper
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Patent number: 11320790Abstract: A method for marking a sapphire watch crystal, through the interaction between a laser beam and the sapphire. The beam is focused on a point inside the crystal and the interaction is such that it produces a rectilinear opaque area, which is parallel to the upper surface of the crystal or perpendicular to the surface. The orientation of the opaque area depends on the mode of operation applied. According to the hatching mode of operation, the beam is scanned along one or more linear paths, producing opaque lines inside the crystal, which are parallel to the upper surface. The perforation mode of operation produces distinct opaque areas, obtained by discontinuous operation of the beam on a number of juxtaposed points. According to this latter mode of operation, the opaque areas extend in the direction perpendicular to the upper surface of the crystal.Type: GrantFiled: March 16, 2020Date of Patent: May 3, 2022Assignee: Comadur SAInventor: Alexandre Netuschill
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Patent number: 11203674Abstract: The object of the present invention is to attain both water/oil repellency and hardness. The transparent film of the present invention comprises: a polysiloxane backbone; and a first hydrocarbon chain-containing group bonded to a part of silicon atoms forcing the polysiloxane backbone, wherein the thickness of the transparent film is not less than 6 nm and not more than 50 nm.Type: GrantFiled: October 27, 2015Date of Patent: December 21, 2021Assignee: SUMITOMO CHEMICAL COMPANY, LIMITEDInventors: Yasuharu Shimazaki, Yoshihiro Harada, Ryu Takeko, Atsushi Hozumi, Chihiro Urata
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Patent number: 11166458Abstract: A wet wipe is disclosed that provides both contact sanitization of a surface and application of a residual antimicrobial coating on the surface through the same wiping. The wet wipe comprises a substrate such as an absorbent nonwoven fabric and a liquid composition impregnated therein, the liquid composition comprising an organosilane such as the antimicrobial dimethyloctadecyl[3-(trimethoxysilyl)propyl] ammonium chloride, a non-silane quaternary disinfectant, an organic amine, and a solvent. The non-silane quaternary actives comprise a mixture of actives, and the solvent comprises 60 wt. % isopropanol or more.Type: GrantFiled: May 1, 2018Date of Patent: November 9, 2021Assignee: Allied Bioscience, Inc.Inventors: Craig Grossman, Gavri Grossman, Jie Fang, Misagh Alipour
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Patent number: 11104824Abstract: A shaped product comprising a hardcoat layer, wherein the hardcoat layer is a cured product of a curable composition comprising a cationic curable silicone resin and a leveling agent, the cationic curable silicone resin comprising a silsesquioxane unit, having a monomer unit having an epoxy group in a proportion of not less than 50% by mol in a total monomer unit, and having a number average molecular weight of 1000 to 3000.Type: GrantFiled: August 7, 2018Date of Patent: August 31, 2021Assignee: DAICEL CORPORATIONInventors: Shinji Kikuchi, Nobuhiko Harada
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Patent number: 10995200Abstract: Provided are a kaolin clay for a thermoplastic resin composition that can provide high impact strength and glossiness and a thermoplastic resin composition containing the same. A kaolin clay for a thermoplastic resin composition is subjected to a surface treatment with 0.2 to 10 parts by mass of at least one selected from the group consisting of methyl silicate, ethyl silicate, propyl silicate, and butyl silicate relative to 100 parts by mass of the kaolin clay.Type: GrantFiled: May 31, 2017Date of Patent: May 4, 2021Assignee: SHIRAISHI KOGYO KAISHA, LTD.Inventors: Kenichiro Eguchi, Yutaka Minamino, Ruriko Nakagawa, Kosuke Kawai, Masahiro Matsui
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Patent number: 10879475Abstract: A composition includes a product of a condensation reaction between a thermal cross-linking agent and a product of hydrolysis and condensation polymerization of a compound represented by Chemical Formula 1.Type: GrantFiled: October 11, 2019Date of Patent: December 29, 2020Assignee: Samsung Electronics Co., Ltd.Inventors: Eun Kyung Lee, Jiyoung Jung, Jeong Il Park, Ajeong Choi
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Patent number: 10526672Abstract: The disclosure provides an electrical steel sheet with an insulating coating excellent in both punchability and powdering resistance, without any chromium compound being contained in the insulating coating. The electrical steel sheet with an insulating coating includes an electrical steel sheet and an insulating coating formed on the electrical steel sheet. The insulating coating contains Si and particulate organic resin. The organic resin contains primary particles having an average primary particle size of 1.0 ?m or less, and 5% or more and 50% or less of the primary particles of the organic resin are agglomerated particles.Type: GrantFiled: April 5, 2016Date of Patent: January 7, 2020Assignee: JFE STEEL CORPORATIONInventors: Naoki Muramatsu, Nobuko Nakagawa, Kazumichi Sashi, Chiyoko Tada
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Patent number: 10502995Abstract: A method for making a dielectric film includes a substrate on which is deposited a siloxane starting material and particles, wherein the siloxane starting material has a siloxane polymer, a siloxane oligomer and/or silane monomers, and wherein the particles have an average particle size of less than 400 nm. After deposition, heat and/or electromagnetic energy is applied to the siloxane particle layer so as to cure the layer and form a dielectric film on the substrate. The formed film is optically transmissive to visible light and transmits at least 80% of the visible light incident thereon, and is electrically insulating and has a sheet resistance of 1000 ?/sq or more.Type: GrantFiled: June 22, 2015Date of Patent: December 10, 2019Assignee: Inkron OyInventors: Juha Rantala, Jarkko Heikkinen, Janne Kylmä
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Patent number: 10195602Abstract: A photocatalytic system having enhanced photo efficiency/photonic efficacy is provided that includes a thin nucleation material coated on a substrate. The nucleation material enhances lattice matching for a subsequently deposited photocatalytic active material. Such a photocatalytic system may be used as a self-cleaning surface in an application where removal of fingerprints and other residue is desired. In certain aspects, the nucleation material comprises aluminum oxide (Al2O3) and the photocatalytic material comprises an anatase phase of titanium dioxide (TiO2) deposited over the nucleation material. A photocatalytic activity of the system is ? about 50% above a comparative photocatalytic activity where the photocatalytic active material is disposed directly on the substrate. Methods of making such photocatalytic systems are also provided.Type: GrantFiled: December 1, 2016Date of Patent: February 5, 2019Assignee: GM GLOBAL TECHNOLOGY OPERATIONS LLCInventors: Gayatri Vyas Dadheech, Thomas A. Seder, James A. Carpenter
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Patent number: 10113035Abstract: The present invention is a curable polysilsesquioxane compound comprising one structural unit or two or more structural units represented by R1SiO3/2, the curable polysilsesquioxane compound having a 29Si nuclear magnetic resonance spectrum that has a first peak top within a range of ?60 ppm or more and less than ?54 ppm, has a second peak top within a range of ?70 ppm or more and less than ?61 ppm, and substantially does not have a peak within a range of ?53 ppm or more and less than ?45 ppm, and a method for producing the curable polysilsesquioxane compound, and a curable composition comprising the curable polysilsesquioxane compound and a silane coupling agent, and a cured product obtained by heating the curable composition, and a method for using the curable polysilsesquioxane compound or the curable composition, as an optical device-securing material.Type: GrantFiled: May 7, 2015Date of Patent: October 30, 2018Assignee: LINTEC CORPORATIONInventors: Masami Matsui, Mikihiro Kashio
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Patent number: 10107942Abstract: An anti-reflective film having a stacked structure including a transparent substrate, a high refraction layer and a low refraction layer, and more specifically, the low refraction layer may include, as a binder, a siloxane compound synthesized by reacting alkoxysilane and organosilane having a fluoroalkyl group.Type: GrantFiled: October 14, 2013Date of Patent: October 23, 2018Assignee: LG HAUSYS, LTD.Inventors: Ji-Yeon Yang, Hong-Kwan Cho, Jin-Ki Hong, Won-Kook Kim
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Patent number: 10049951Abstract: A method for manufacturing a bonded substrate is provided, the bonded substrate including a single-crystal semiconductor substrate on a sintered-body substrate that has small warpage after bonding, has good thermal conductivity and small loss at high-frequency region and is suitable for high-frequency devices. Specifically, the method at least includes: applying coating to all of the faces of a sintered-body substrate, so as to obtain a support substrate including at least one layer of amorphous film; and bonding the support substrate and a single-crystal semiconductor substrate via the amorphous film. On a surface of the amorphous film on the support substrate to be bonded with the single-crystal semiconductor substrate, concentration of each of Al, Fe and Ca by ICP-MS method is less than 5.0×1011 atoms/cm2, and surface roughness Rms of the surface of the amorphous film is 0.2 nm or less.Type: GrantFiled: September 30, 2015Date of Patent: August 14, 2018Assignee: Shin-Etsu Chemical Co., Ltd.Inventors: Shigeru Konishi, Makoto Kawai
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Patent number: 10000616Abstract: The present invention provides a weather-resistant sheet for a solar cell module, which has better adhesion to a water impermeable sheet, better blocking resistance against the water impermeable sheet, and better adhesion to EVA that is a sealant; a weather-resistant sheet for a solar cell module in which a cured coating film layer thereof can suppress UV transmission significantly; a product including the sheet; and a process for producing the sheet.Type: GrantFiled: January 13, 2011Date of Patent: June 19, 2018Assignee: DAIKIN INDUSTRIES, LTD.Inventors: Hideto Nakagawa, Kenji Goboh, Kazuko Aoki, Takayuki Araki, Hiroshi Torii, Yoshihisa Yamamoto, Eiji Fujita
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Patent number: 9972583Abstract: An article having a surface treated to provide a protective coating structure in accordance with the following method: vapor depositing a first layer on a substrate, wherein the first layer is a metal oxide adhesion layer selected from the group consisting of an oxide of a Group IIIA metal element, a Group IVB metal element, a Group VB metal element, and combinations thereof; vapor depositing a second layer upon the first layer, wherein the second layer includes a silicon-containing layer selected from the group consisting of silicon oxide, silicon nitride, and silicon oxynitride; and vapor depositing a third layer upon the second layer, wherein the third layer is a functional organic-comprising layer, wherein the functional organic-comprising layer is a SAM.Type: GrantFiled: August 5, 2013Date of Patent: May 15, 2018Assignee: SPTS Technologies LimitedInventors: Boris Kobrin, Nikunj Dangaria, Romuald Nowak, Michael T. Grimes
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Patent number: 9944788Abstract: A molded article is provided that has a resin matrix having a surface, the resin matrix formed from cross-linked polyester resin or vinyl-ester resin. Glass fibers are crossed linked to the resin matrix via a silane coupling agent reactive with the matrix. A molded article is provided that has a resin matrix having a surface, the resin matrix formed from cross-linked polyester resin or vinyl-ester resin. Glass fibers each covalently bonded to at least one microspheroid matrix via a silane coupling agent reactive with a surface of the at least one microspheroids are present in increase the fiber pull strength. A sizing composition for treating glass fibers is also provided for use in such articles.Type: GrantFiled: June 30, 2015Date of Patent: April 17, 2018Assignee: CONTINENTAL STRUCTURAL PLASTICS, INC.Inventors: Probir Kumar Guha, Michael J. Siwajek, Michael J. Hiltunen, Michael Z. Asuncion
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Patent number: 9916927Abstract: Electrically insulating Al2O3—SiO2 thin coatings have been deposited on long-length 316 stainless steel (SS) tape using a reel-to-reel continuous sol-gel dip coating process for co-winding insulation into YBCO pancake coils, a high temperature superconductor magnet technology. Coatings with a thickness of ˜2 ?m are achieved after just one dip with a tape withdrawal speed of ˜16 mm/s (1 m/min) and a calcination at 700° C. The coatings were measured to have a room-temperature breakdown voltage of about 100 V, corresponding to a dc dielectric strength of about 50 MV/m. Consequently, this process has low cost and high throughput and produces a thin electrical insulation with excellent thermal, dielectric, and mechanical properties. A new technique has been developed in the coating process to mitigate coating buildup near the edges of the tape.Type: GrantFiled: March 25, 2016Date of Patent: March 13, 2018Assignee: The Florida State University Research Foundation, Inc.Inventors: Hom Kandel, Jun Lu, Youri Viouchkov, Scott Gundlach, Adam Voran, William D. Markiewicz
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Patent number: 9814667Abstract: A method for producing aqueous silicone emulsions containing highly viscous polyorganosiloxanes having a low content of cyclic siloxanes in several steps; the addition of acidic compounds intended to catalyze polycondensation of the polyorganosiloxanes being carried out only after an emulsion is produced in the first step exclusively with nonionogenic emulsifiers, without impairing the rate of the polycondensation reaction.Type: GrantFiled: August 8, 2013Date of Patent: November 14, 2017Assignee: WACKER CHEMIE AGInventors: Holger Rautschek, Marco Kauschke
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Patent number: 9783715Abstract: The present invention relates to: a curable composition comprising a component (A), a component (B), and a component (C), the curable composition comprising the component (A) and the component (B) in a mass ratio (component (A):component (B)) of 100:0.3 to 100:30, a cured product obtained by curing the curable composition, a method for using the curable composition as an optical device-securing adhesive or an optical device sealing material. The present invention provides a curable composition that produces a cured product that exhibits excellent transparency, excellent heat resistance, excellent crack resistance, and high adhesion, a cured product obtained by curing the curable composition, a method for using the curable composition as an optical device-securing adhesive or an optical device sealing material, a sealed optical device in which an optical device is sealed with a cured product of the curable composition, and a method for producing the same.Type: GrantFiled: February 27, 2014Date of Patent: October 10, 2017Assignee: LINTEC CORPORATIONInventors: Masami Matsui, Mikihiro Kashio
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Patent number: 9735322Abstract: The present invention relates to a light-emitting diode package comprising a high-strength molding part. The light-emitting diode package, according to the present invention, comprises: a housing; at least one light-emitting diode chip disposed in the housing; a molding part which covers the at least one light-emitting diode chip; a first phosphor excited by the at least one light-emitting diode chip so as to emit green light; and a second phosphor excited by the at least one light-emitting diode chip so as to emit red light, wherein the molding part has an oxygen gas permeability of 140 cc/m2/day or less, and the second phosphor can emit red light having a full width at half maximum of 20 nm or less.Type: GrantFiled: February 23, 2015Date of Patent: August 15, 2017Assignee: Seoul Semiconductor Co., Ltd.Inventors: Kwang Yong Oh, Ho Jun Byun, Ki Bum Nam
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Patent number: 9683130Abstract: Provided is composition for a liquid coating. The composition may include a silanol terminated copolymer, at least one cross-linker, and a catalyst. The silanol terminated copolymer may include from about 10 to about 25 mol % of a diphenylsiloxane repeat unit and greater than about 50 mol % of a dialkylsiloxane repeat unit. The at least one cross-linker may be one or more selected from: tetraethoxysilane (TEOS), a trialkoxysilane terminated polydialkylsiloxane and/or one or more of a trialkoxysilyl terminated polymer.Type: GrantFiled: March 19, 2014Date of Patent: June 20, 2017Assignee: XEROX CORPORATIONInventor: Brynn Dooley
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Patent number: 9540522Abstract: The present invention relates to a composition for producing a coating having antifouling properties on a component of a turbomachine. The composition comprises a binder comprising at least one silicon-organic constituent, ceramic particles and a solvent, the ceramic particles comprising at least silicon dioxide and the silicon-organic constituent comprising at least alkoxysilane. In addition, the present invention relates to a process for producing a coating using such a composition and also a correspondingly produced coating and a component provided therewith.Type: GrantFiled: July 8, 2015Date of Patent: January 10, 2017Assignee: MTU AERO ENGINES AGInventors: Natividad Lopez Lavernia, Max Niegl, Melanie Heusing
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Patent number: 9333767Abstract: A drawing apparatus and drawing method to perform drawing on a drawing target region are shown. The drawing apparatus includes a drawing unit and a control unit. The drawing target region is a surface of a plurality of nails and the nails include unit regions in contact with each other to be drawn with ink in different colors. The control unit includes a nail specifying unit which judges whether each of the unit regions is a dried unit region, a non-dried unit region, and a non-drawn unit region. Then, the nail specifying unit extracts the non-drawn unit region which is not in contact with the non-dried unit region as a specific unit region. The control unit also includes a drawing control unit which controls the drawing unit to perform the drawing on the specific unit region.Type: GrantFiled: June 18, 2015Date of Patent: May 10, 2016Assignee: CASIO COMPUTER CO., LTD.Inventor: Shuichi Yamasaki
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Patent number: 9329306Abstract: The invention provides a carbosiloxane vinylic monomer which comprises one sole ethylenically unsaturated group, one sole terminal butyl group; and one oligo(carbosiloxane)-containing linkage between the ethylenically unsaturated terminal group and the terminal butyl group. The present invention is also related to a polymer, an actinically-crosslinkable silicone-containing prepolymer, a silicone hydrogel polymeric material, or a silicone hydrogel contact lens, which comprises monomeric units derived from a carbosiloxane vinylic monomer of the invention.Type: GrantFiled: April 23, 2015Date of Patent: May 3, 2016Assignee: Novartis AGInventors: Jinyu Huang, Frank Chang
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Patent number: 9109121Abstract: Methods and compositions for forming porous low refractive index coatings on substrates are provided. The method comprises coating a substrate with a sol-formulation comprising silica based nanoparticles and an alkyltrialkoxysilane based binder. Use of the alkyltrialkoxysilane based binder results in a porous low refractive index coating having bimodal pore distribution including mesopores formed from particle packing and micropores formed from the burning off of organics including the alkyl chain covalently bonded to the silicon. The mass ratio of binder to particles may vary from 0.1 to 20. Porous coatings formed according to the embodiments described herein demonstrate good optical properties (e.g. a low refractive index) while maintaining good mechanical durability due to the presence of a high amount of binder and a close pore structure.Type: GrantFiled: October 13, 2011Date of Patent: August 18, 2015Assignees: Intermolecular, Inc., Guardian Industries CorporationInventors: Nikhil D. Kalyankar, Zhi-Wen Sun, Jeroen Van Duren, Mark Lewis, Liang Liang
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Patent number: 9062229Abstract: Process for producing an organosiloxane polymer and novel organosiloxane polymer compositions. The process according to the invention comprises hydrolyzing tetraalkoxysilane monomers in a hydrolysis step; and polymerising said hydrolyzed monomers in a polymerization step by subjecting them to conditions conducive to polymerisation to form an organosiloxane polymer. The hydrolysis step is conducted in a reaction medium comprising an organic compound with hydroxy groups. The invention allows for the synthesis of siloxane polymer compositions suitable for thin-film applications using a high content of tetra- and trifunctional silixane polymer precursors.Type: GrantFiled: April 30, 2012Date of Patent: June 23, 2015Assignee: Braggone OyInventor: Ari Kärkkäinen
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Patent number: 9011890Abstract: Antibacterial sol-gel coating solutions are used to form articles. The antibacterial sol-gel coating solution includes at least one Ti or Si-containing compound that is capable of hydrolyzing to form a base film; a regulating agent capable of regulating the hydrolysis rate of the Ti or Si-containing compounds, an organic solvent, water, and at least one soluble compound of an antibacterial metal, such as Ag, Cu, Mg, Zn, Sn, Fe, Co, Ni, or Ce.Type: GrantFiled: December 12, 2005Date of Patent: April 21, 2015Assignee: Qinhuangdao Yipeng Special Glass Co., Ltd.Inventors: De-xian Wang, Zhen-yu Lei
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Patent number: 9011586Abstract: The invention relates to a binding agent comprising an aqueous, film-forming, polymeric siloxane. The invention also relates to a coating agent that is produced using said binding agent and to a workpiece that is coated with said coating agent.Type: GrantFiled: March 21, 2005Date of Patent: April 21, 2015Assignee: Ewald Dörken AGInventors: Thomas Kruse, Bettina Werner, Gerhard Reusmann
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Patent number: 8968459Abstract: A durable superhydrophobic coating, which coating has the ability to self-heal, similar to the regeneration function observed in biological systems. The coating composition comprises the reaction products of at least one fluorine-containing silane compound (A), at least one hydrolysable compound (B), at least one polysiloxane compound (C), at least one relatively large-sized ceramic particle (I), at least one nano-sized ceramic particle (II) and at least one solvent.Type: GrantFiled: December 11, 2013Date of Patent: March 3, 2015Assignee: NEI CorporationInventor: Jiong Liu
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Patent number: 8962753Abstract: A hybrid coating composition including an organosilane component, a metal alkoxide component and a surfactant component, with the metal alkoxide component present in the composition at a molar ratio of about 75:1 with respect to the surfactant component. The hybrid coating composition once cured on a transparent substrate has an initial clarity greater than 98. Transparent members are also disclosed that include a transparent substrate having the hybrid coating composition cured on a first major surface thereof.Type: GrantFiled: March 12, 2014Date of Patent: February 24, 2015Assignee: The Boeing CompanyInventors: Kjersta L. Larson-Smith, Kay Y. Blohowiak, Jill E. Seebergh, Michael R. Sirkis, Vasan S. Sundaram
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Patent number: 8951342Abstract: A chemical vapor deposition method for producing a porous organosilica glass film comprising: introducing into a vacuum chamber gaseous reagents including at least one precursor selected from the group consisting of an organosilane and an organosiloxane, and a porogen that is distinct from the precursor; applying energy to the gaseous reagents in the vacuum chamber to induce reaction of the gaseous reagents to deposit a preliminary film on the substrate, wherein the preliminary film contains the porogen; and removing from the preliminary film substantially all of the porogen to provide the porous film with pores and a dielectric constant less than 2.6.Type: GrantFiled: November 1, 2011Date of Patent: February 10, 2015Assignee: Air Products and Chemicals, Inc.Inventors: Raymond Nicholas Vrtis, Mark Leonard O'Neill, Jean Louise Vincent, Aaron Scott Lukas, Mary Kathryn Haas
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Publication number: 20150033980Abstract: One aspect of the present invention includes a method of fabricating an electronic device. According to one embodiment, the method comprises providing a substrate having dielectric oxide surface areas adjacent to electrically conductive surface areas, chemically bonding an anchor compound with the dielectric oxide surface areas so as to form an anchor layer, initiating the growth of a metal using the electrically conductive surface areas and growing the metal so that the anchor layer also bonds with the metal. The anchor compound has at least one functional group capable of forming a chemical bond with the oxide surface and has at least one functional group capable of forming a chemical bond with the metal. Another aspect of the present invention is an electronic device. A third aspect of the present invention is a solution comprising the anchor compound.Type: ApplicationFiled: October 16, 2014Publication date: February 5, 2015Inventor: Artur KOLICS
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Patent number: 8936674Abstract: The present invention provides a conductive silica sol composition containing at least a silica sol composition, and at least one selected from perfluoroalkyl sulfonates perfluoroalkyl sulfone imide salts, and bis(fluorosulfonyl) imide salts.Type: GrantFiled: November 13, 2009Date of Patent: January 20, 2015Assignees: Mitsubishi Materials Corporation, Mitsubishi Materials Electronic Chemicals Co., Ltd.Inventors: Tsunetoshi Honda, Tsutomu Atsuki, Natsumi Sakuraba
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Patent number: 8912238Abstract: Methods of increasing the solubility of a base in supercritical carbon dioxide include forming a complex of a Lewis acid and the base, and dissolving the complex in supercritical carbon dioxide. The Lewis acid is soluble in supercritical carbon dioxide, and the base is substantially insoluble in supercritical carbon dioxide. Methods for increasing the solubility of water in supercritical carbon dioxide include dissolving an acid or a base in supercritical carbon dioxide to form a solution and dissolving water in the solution. The acid or the base is formulated to interact with water to solubilize the water in the supercritical carbon dioxide. Some compositions include supercritical carbon dioxide, a hydrolysable metallic compound, and at least one of an acid and a base. Some compositions include an alkoxide and at least one of an acid and a base.Type: GrantFiled: July 9, 2012Date of Patent: December 16, 2014Assignee: Micron Technology, Inc.Inventors: Chien M. Wai, Hiroyuki Ohde, Stephen J. Kramer
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Patent number: 8907024Abstract: An object of the present invention is to provide a curable composition that provides high hardness and can be used in adhesives and coating agents. This object can be achieved by a curable composition containing: 100 parts by weight of a reactive silyl group-containing organic polymer (A) that has a number average molecular weight of 2,000 to 6,000 and contains 1.3 to 5 reactive silyl groups per molecule; and 0 to 40 parts by weight of a plasticizer (C). This curable composition is suitable for flooring adhesives and tile adhesives, which require high hardness.Type: GrantFiled: November 18, 2011Date of Patent: December 9, 2014Assignee: Kaneka CorporationInventors: Kiyoshi Miyafuji, Ayako Yano
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Patent number: 8906153Abstract: Provided is a condensation reaction product solution which is particularly suitable for filling a trench formed on a substrate having a narrow width and a high aspect ratio. The condensation reaction product solution has a long pot life, superior trench-filling when used for trench-filling, and a low cure shrinkage, an excellent crack resistance and a HF resistance when cured and converted into silicon oxide.Type: GrantFiled: June 24, 2010Date of Patent: December 9, 2014Assignee: Asahi Kasei E-materials CorporationInventors: Reiko Moriyama, Hideo Saito, Syouzou Takada, Ichirou Doi
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Publication number: 20140335275Abstract: Provided are modified hybrid sol-gel precursor solutions and coatings formed from such solutions. A modified hybrid sol-gel precursor solution includes an inorganic precursor, cross-linkable inorganic-organic precursor, cross-linkable organic precursor, protic solvent, and aprotic solvent. The inorganic precursor may include a metal or metalloid and two or more hydrolysable groups. The cross-linkable inorganic-organic precursor may include a metal, hydrolysable group, and organic molecule. The cross-linkable organic precursor has another organic molecule with two or more second cross-linking groups. A combination of protic and aprotic solvents in the same solution may be used to control properties of the solutions, thermodynamics, and other processing aspects. The solution may also include nanoparticles. The nanoparticles may include functionalized surface to form covalent bonds with one or more precursors of the solution, such as a plasma treated surface.Type: ApplicationFiled: July 9, 2014Publication date: November 13, 2014Applicant: ADVENIRA ENTERPRISES, INC.Inventor: Elmira Ryabova
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Patent number: 8864898Abstract: Anti-reflective coatings and coating formulations, optical elements and processes for preparing coating formulations and optical elements are described. The coating formulations are formed from at least one alkoxysilane material and at least one high boiling solvent. The coating formulation may be applied using roller coat processes.Type: GrantFiled: May 31, 2011Date of Patent: October 21, 2014Assignee: Honeywell International Inc.Inventors: Desaraju Varaprasad, Boris Korolev, Sudip Mukhopadhyay
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Patent number: 8864894Abstract: There is provided a resist underlayer film forming composition for lithography for forming a resist underlayer film capable of being used as a hard mask or a bottom anti-reflective coating, or a resist underlayer film causing no intermixing with a resist and having a dry etching rate higher than that of the resist. A film forming composition comprising a silane compound having an onium group, wherein the silane compound having an onium group is a hydrolyzable organosilane having, in a molecule thereof, an onium group, a hydrolysis product thereof, or a hydrolysis-condensation product thereof. The composition uses as a resist underlayer film forming composition for lithography. A composition comprising a silane compound having an onium group, and a silane compound having no onium group, wherein the silane compound having an onium group exists in the whole silane compound at a ratio of less than 1% by mol, for example 0.01 to 0.95% by mol.Type: GrantFiled: August 13, 2009Date of Patent: October 21, 2014Assignee: Nissan Chemical Industries, Ltd.Inventors: Wataru Shibayama, Makoto Nakajima, Yuta Kanno
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Patent number: 8864897Abstract: The embodiments of the invention are directed to coatings and their uses. More particularly, the embodiments of the invention are directed to coating compositions that include silane-based precursors that are used to form coatings through a sol-gel process. The coating comprise a dried gel formed from a sol comprising a hydrolyzed alkoxysilane, a hydrolyzed organosilane, and a hydrolyzed organofluorosilane, wherein the hydrolyzed organosilane and the hydrolyzed organofluorosilane are each separately prepared before combining with each other and with alkoxysilane or with another reagent. The coatings so formed are characterized by anti-reflective, abrasion resistant, and anti-soiling properties. The coatings also have extended weatherability to heat, humidity, and protection against ambient corrosives. The coatings formed from the compositions described herein have wide application, including, for example, use as coatings on the outer glass of solar cells.Type: GrantFiled: July 18, 2011Date of Patent: October 21, 2014Assignee: Enki Technology, Inc.Inventors: Vinod Nair, Bakul Champaklal Dave
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Patent number: 8852333Abstract: A new generation environmental friendly water-based coating composition which exhibits excellent coating film properties is disclosed. Said water-based coating composition comprises mesoporous silica nanoparticles in organosilica, water, and a film-forming catalyst, and optionally with a small amount of ethanol. Method for manufacturing said water-based coating composition and the use thereof are also disclosed.Type: GrantFiled: December 18, 2012Date of Patent: October 7, 2014Assignee: Nano and Advanced Materials Institute LimitedInventors: Ka Wai Wong, Xinghua Li, Yee Man Ho, Wing Yee Cheng, Ka Cheong Luk
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Patent number: 8852684Abstract: A finish for acrylic fiber to be processed into carbon fiber includes an ester compound having at least three ester groups in its molecule and a silicone compound, wherein the silicone compound constitutes 10 to 50 weight percent of the whole of the nonvolatile matter of the finish. A method of manufacturing carbon fiber includes the processes of applying the finish for acrylic fiber to be processed into carbon fiber to acrylic fiber to be processed into carbon fiber; oxidative-stabilizing the finish-applied acrylic fiber in an oxidizing atmosphere at 200 to 300 deg. C. to convert the fiber into oxidized fiber; and carbonizing the oxidized fiber in an inert atmosphere at 200 to 3000 deg. C.Type: GrantFiled: November 16, 2006Date of Patent: October 7, 2014Assignee: Matsumoto Yushi-Seiyaku Co., Ltd.Inventors: Yoshinobu Okabe, Yoshiaki Tanaka, Yoshio Hashimoto, Mikio Nakagawa
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Publication number: 20140272384Abstract: Embodiments provided herein describe coating formulations, such as those used to form optical coatings, panels having optical coatings thereon, and methods for forming optical coatings and panels. The coating formulation includes an aqueous-based suspension of particles. The particles have a sheet-like morphology and a thickness of less than about 10 nm. The coating also includes a polysiloxane or silane emulsion, a polysiloxane or silane solution, or a combination thereof.Type: ApplicationFiled: August 22, 2013Publication date: September 18, 2014Applicant: Intermolecular Inc.Inventors: Scott Jewhurst, Nikhil Kalyankar
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Publication number: 20140273447Abstract: The invention provides a composition for forming a titanium-containing resist underlayer film comprising: as a component (A), compounds selected from titanium compounds represented by the following general formulae (A-1) and (A-2) and a titanium-containing compound obtained by hydrolysis and/or condensation of the titanium compounds, as a component (B), compounds selected from titanium compounds represented by the following general formulae (B-1) and (B-2) and a titanium-containing compound obtained by hydrolysis and/or condensation of the titanium compounds, and as a component (D), solvent. There can be provided a composition for forming a titanium-containing resist underlayer film to form a resist underlayer film having favorable pattern adhesiveness and excellent etching selectivity.Type: ApplicationFiled: February 6, 2014Publication date: September 18, 2014Applicant: SHIN-ETSU CHEMICAL CO., LTD.Inventors: Tsutomu OGIHARA, Seiichiro TACHIBANA, Takafumi UEDA, Yoshinori TANEDA
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Patent number: 8784600Abstract: A method for adhering glass including cleaning ceramic printed glass using a first solution containing dodecylbenzenesulfonic acid, p-toluenesulfonic acid, and a solvent, and cleaning the glass using a second solution containing an alkoxysilane compound. Thereafter, a glass primer is applied to the glass, an adhesive is applied, and the glass is adhered to an adherend. The first solution includes not less than 0.1 mass % and not more than 10 mass % of the dodecylbenzenesulfonic acid, and not less than 0.01 mass % and not more than 5 mass % of the p-toluenesulfonic acid, per 100 mass % of the solvent.Type: GrantFiled: September 12, 2011Date of Patent: July 22, 2014Assignee: The Yokohama Rubber Co., Ltd.Inventors: Kiminori Araki, Hiroshi Fukui
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Publication number: 20140170425Abstract: Disclosed is a titanium-containing ceramic paint, including 100 parts by weight of silica sol, 50 to 100 parts by weight of organic silane, 0.3 to 1 parts by weight of a catalyst, 5 to 20 parts by weight of titanium powder, and 1 to 5 parts by weight of a silicone oil. The organic silane can be methyltrimethoxy silane and/or methyltriethoxy silane. The catalyst can be formic acid, acetic acid, hydrochloric acid, citric acid, methyl formate, ethyl acetoacetate, maleic anhydride, or combinations thereof. The titanium-containing ceramic paint may further include 30 to 50 parts by weight of filler, such as silica, alumina, zirconium dioxide, silicon carbide, aluminum nitride, boron nitride, kaolin, talcum powder, mica powder, silicate of aluminum or zirconium, barium sulfate, metal fiber, stainless powder, or combinations thereof. The titanium-containing ceramic paint may further include 30 to 40 parts by weight of a color powder.Type: ApplicationFiled: July 12, 2013Publication date: June 19, 2014Applicant: Innotek Technology (China) LimitedInventors: Hsueh-Tso Lin, Dick Zhong
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Publication number: 20140170412Abstract: An insulating composition including a graphene oxide and an insulating material including the same; and a polar solvent having a solvent polarity index (P) of greater than 5.5, a substrate including an insulating layer using the same, and a method for manufacturing the substrate. It is possible to provide an insulating composition including a specific solvent that can secure dispersibility of the graphene oxide while including the graphene oxide having excellent insulating and mechanical properties as an insulating material. Further, it is possible to provide a substrate including a fine insulating layer pattern as well as a bulk insulating layer pattern by using the insulating composition to overcome an aggregation problem in a conventional inkjet printing method.Type: ApplicationFiled: March 14, 2013Publication date: June 19, 2014Applicant: SAMSUNG ELECTRO-MECHANICS CO., LTD.Inventors: Soo Young JI, Shang Hoon Seo, Suk Jin Ham, Seung Hwan Kim
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Patent number: 8748301Abstract: Provided are: a diffusing agent composition for ink-jet; a method for production of electrode and solar battery using the diffusing agent composition; and a solar battery produced by the method for production. The diffusing agent composition for ink-jet includes (a) a silicon compound, (b) an impurity-diffusing component and (c) a solvent, in which: the solvent (c) contains (c1) a solvent having a boiling point of no higher than 100° C. and (c2) a solvent having a boiling point of 180 to 230° C.; and the solvent (c1) is contained at a ratio of 70 to 90% by mass and the solvent (c2) is contained at a ratio of 1 to 20% by mass both relative to the total mass of the composition.Type: GrantFiled: April 8, 2009Date of Patent: June 10, 2014Assignee: Tokyo Ohka Kogyo Co., Ltd.Inventors: Toshiro Morita, Katsuya Tanitsu