Polymerization Of Unsaturated Compound Patents (Class 570/138)
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Publication number: 20150018586Abstract: The present invention provides a novel method for producing a mixture of fluoroalkyl iodides with high production efficiency, the method enabling the production of a desired fluoroalkyl iodide with high selectivity.Type: ApplicationFiled: March 12, 2013Publication date: January 15, 2015Applicant: Daikin Industries, Ltd.Inventor: Takeomi Hirasaka
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Patent number: 8779220Abstract: A method for capturing certain fluorinated vinyl monomers from a gaseous mixture using ionic liquids is described. The gaseous mixture is contacted with at least one ionic liquid, whereby at least a portion of the fluorinated vinyl monomer is absorbed by the ionic liquid. The method is useful for reducing emissions of fluorinated vinyl monomers and for increasing the product yields in the manufacture of polymers from these monomers.Type: GrantFiled: May 9, 2012Date of Patent: July 15, 2014Assignee: E I du Pont de Nemours and CompanyInventors: Charles Joseph Noelke, Mark Brandon Shiflett
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Patent number: 8454738Abstract: Disclosed is a mold-releasing agent comprising, as active ingredients, a graft copolymer (A) in which a polyalkylene glycol or an alkyl ether thereof is graft-copolymerized with a polyfluoro-1-alkene represented by the general formula: CnF2n+1(CH2CF2)a(CF2CF2)bCH?CH2 (wherein n is an integer of 1 to 6, a is an integer of 1 to 4, and b is an integer of 1 to 3), and a polyfluoroalkylphosphonic acid represented by the general formula: CnF2n+1(CH2CF2)a(CF2CF2)b(CH2CH2)cP(O)(OH)2 (wherein n is an integer of 1 to 6, a is an integer of 1 to 4, and b is an integer of 1 to 3, and c is an integer of 1 to 3) or a salt thereof (B). The mold-releasing agent comprises, as an active ingredient, a compound having a perfluoroalkyl group containing 6 or less carbon atoms, which is said to have low bioaccumulation potential, and having mold release performance equivalent to or more than that of a mold-releasing agent comprising a compound having a perfluoroalkyl group containing 8 or more carbon atoms as an active ingredient.Type: GrantFiled: June 3, 2010Date of Patent: June 4, 2013Assignee: Unimatec Co., Ltd.Inventors: Yoshiyama Kaneumi, Seiichiro Murata, Katsuyuki Sato
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Patent number: 8378061Abstract: Provided are films made from copolyesters having improved oil repellency as compared to conventional copolyesters. The copolyesters are derived from certain perfluorinated monomers.Type: GrantFiled: September 1, 2010Date of Patent: February 19, 2013Assignee: E.I. du Pont de Nemours and CompanyInventors: Neville Everton Drysdale, Surbhi Mahajan, Kenneth Gene Moloy, Fredrik Nederberg, Joel M. Pollino, Joachim C. Ritter
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Patent number: 8377187Abstract: Disclosed is a graft copolymer in which a polyalkylene glycol or an alkyl ether thereof is graft-copolymerized with a polyfluoro-1-alkene represented by the general formula: CnF2n+(CH2CF2)a(CF2CF2)bCH?CH2 (wherein n is an integer of 1 to 6, a is an integer of 1 to 4, and b is an integer of 1 to 3). The graft copolymer is an oligomer compound having a perfluoroalkyl group containing 6 or less carbon atoms, which is said to have low bioaccumulation potential, and having, when used as an active ingredient of a mold-releasing agent, mold release performance equivalent to that of a compound having a perfluoroalkyl group containing 8 or more carbon atoms.Type: GrantFiled: June 3, 2010Date of Patent: February 19, 2013Assignee: Unimatec Co., Ltd.Inventors: Yoshiyama Kaneumi, Seiichiro Murata, Katsuyuki Sato
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Patent number: 8344192Abstract: The invention provides a technique enabling the separation and recovery of an unreacted fluoromonomer from an aqueous fluoropolymer dispersion obtained by emulsion polymerization, without using any extraction solvent, and enabling the prevention of a hydrolysis of —SO2F and a like sulfonic acid precursor functional group convertible to sulfonic acid group. Thus, the invention provides a recovering method fluoromonomer having a sulfonic acid precursor functional group convertible to a sulfonic acid group and remaining unreacted from an aqueous fluoropolymer dispersion obtained by emulsion polymerization of the fluoromonomer, wherein the unreacted fluoromonomer is recovered from the aqueous fluoropolymer dispersion by evaporation, wherein the aqueous fluoropolymer dispersion has an acidic pH.Type: GrantFiled: December 7, 2007Date of Patent: January 1, 2013Assignee: Daikin Industries, Ltd.Inventors: Tadaharu Isaka, Tadashi Ino, Masaharu Nakazawa, Masahiro Kondo
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Patent number: 8318656Abstract: Production processes and systems are provided that include reacting halogenated compounds, dehalogenating compounds, reacting alcohol's, reacting olefins and a saturated compounds, reacting reactants having at least two —CF3 groups with reactants having cyclic groups, RF-compositions such as RF-intermediates, RF-surfactants, RF-monomers, RF-monomer units, RF-metal complexes, RF-phosphate esters, RF-glycols, RF-urethanes, and or RF-foam stabilizers. The RF portion can include at least two groups —CF3 groups, at least three —CF3 groups, and/or at least two —CF3 groups and at least two —CH2 groups. Detergents, emulsifiers, paints, adhesives, inks, wetting agents, foamers, and defoamers including the Rf-surfactant composition are provided. Acrylics, resins, and polymers are provided that include a RF-monomer unit. Compositions are provided that include a substrate having a RF-composition thereover.Type: GrantFiled: February 10, 2011Date of Patent: November 27, 2012Assignee: E. I. du Pont de Nemours and CompanyInventors: Janet Boggs, Stephan Brandstadter, John Chien, Vimal Sharma, E. Bradley Edwards, Vicki Hedrick, Andrew Jackson, Gregory Leman, Edward Norman, Robert Kaufman
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Patent number: 8304513Abstract: Disclosed are polyesters, particularly poly(trimethylene terephthalate), comprising fluorovinylether functionalized aromatic repeat units, and methods to make the polyester polymers. The polymers are useful for imparting soil resistance to polyesters, particularly in the form of fibers, fabrics, and carpets.Type: GrantFiled: September 1, 2010Date of Patent: November 6, 2012Assignee: E I du Pont de Nemours and CompanyInventors: Neville Everton Drysdale, Surbhi Mahajan, Kenneth Gene Moloy, Fredrik Nederberg, Joel M. Pollino, Joachim C. Ritter
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Patent number: 8143359Abstract: The purpose of the present invention is to provide an organic silicon compound which has a vinyl group more reactive than those of the conventional organic silicon compounds and can be bonded with another compound. The present organic silicon compound is represented by the following formula (1), wherein R1 is, independently of each other, a vinyl group or an alkyl group having 1 to 4 carbon atoms, R2 is an alkylene group having 3 to 6 carbon atoms, and R3 is, independently of each other, a hydrogen atom or an alkyl group having 1 to 4 carbon atoms and optionally substituted with one or more fluorine atoms.Type: GrantFiled: November 18, 2009Date of Patent: March 27, 2012Assignee: Shin-Etsu Chemical Co., Ltd.Inventors: Noriyuki Koike, Takashi Matsuda, Hirofumi Kishita
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Patent number: 7964553Abstract: RF-compositions including surfactants, foam stabilizers, monomers, polymers, urethanes, intermediates, metal complexes, phosphate esters as well as telomerization methods are provided.Type: GrantFiled: September 4, 2007Date of Patent: June 21, 2011Assignee: E. I. Dupont de Nmeours and CompanyInventors: Andrew Jackson, Vimal Sharma, E. Bradley Edwards, Janet Boggs, Vicki Hedrick, Stephan Brandstadter, John Chien, Edward Norman, Robert Kaufman, Bruno Ameduri, George K. Kostov
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Patent number: 7943567Abstract: Production processes and systems are provided that include reacting halogenated compounds, dehalogenating compounds, reacting alcohol's, reacting olefins and a saturated compounds, reacting reactants having at least two —CF3 groups with reactants having cyclic groups. RF-compositions such as RF-intermediates, RF-surfactants, RF-monomers, RF-monomer units, RF-metal complexes, RF-phosphate esters, RF-glycols, RF-urethanes, and/or RF-foam stabilizers. The RF portion can include at least two —CF3 groups, at least three —CF3 groups, and/or at least two —CF3 groups and at least two —CH2— groups. Detergents, emulsifiers, paints, adhesives, inks, wetting agents, foamers, and defoamers including the RF-surfactant composition are provided. Acrylics, resins, and polymers are provided that include a RF-monomer unit. Compositions are provided that include a substrate having a RF-composition thereover.Type: GrantFiled: January 28, 2005Date of Patent: May 17, 2011Assignee: E.I. du Pont de Nemours and CompanyInventors: Janet Boggs, Stephan Brandstadter, John Chien, Vimal Sharma, E. Bradley Edwards, Vicki Hedrick, Andrew Jackson, Gregory Leman, Edward Norman, Robert Kaufman
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Patent number: 7816468Abstract: Fluoroelastomer gum or crumb is isolated from fluoroelastomer dispersions by the addition of a water-soluble polymeric coagulating agent to the dispersion. This coagulating agent comprises either a homopolymer of ethylene oxide (CH2CH2O—) or a copolymer of ethylene oxide. Specific examples of such copolymers include, but are not limited to ethylene oxide-propylene oxide copolymers and ethylene oxide-butylene oxide copolymers. The viscosity average molecular weight (Mv), determined by rheology, of the coagulant polymer must be at least 500,000 and preferably greater than 2,000,000.Type: GrantFiled: September 18, 2008Date of Patent: October 19, 2010Assignee: DuPont Performance Elastomers LLCInventor: Donald F. Lyons
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Patent number: 7601878Abstract: A solid catalyst used in, for example, production of a perfluoroalkyl iodide telomer is effectively and continuously recovered and the recovered catalyst is continuously recycled to the reactor for reuse. A slurry containing a reaction product and the catalyst is drawn from the reaction system, and the catalyst in the drawn slurry is classified by means of a hydrocyclone, whereby a high-concentration slurry whose catalyst concentration is higher than that of the drawn slurry and a low-concentration slurry whose catalyst concentration is lower than that of the drawn slurry are obtained, and the high-concentration slurry is recycled to the reaction system.Type: GrantFiled: March 16, 2007Date of Patent: October 13, 2009Assignee: Daikin Industries, Ltd.Inventors: Tatsuya Hirata, Kouzou Noda, Jun Miki
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Patent number: 7157124Abstract: A compound represented by formula (1) or (2) and a polymer obtained by polymerizing the compound are provided: wherein Ra is one of the groups represented by Formulas (3-1) to (3-5); Rb is hydrogen, halogen, or a side chain such as —CN, —NCO, —NCS or alkyl having a carbon number of 1 to 20; A is a cyclic diyl group such as 1,4-cyclohexylene, 1,4-cyclohexenylene, 1,4-phenylene, naphthalene-2,6-diyl, tetrahydronaphthalene-2,6-diyl, fluorene-2,7-diyl, bicyclo[2.2.2]oct-1,4-diyl or bicyclo[3.1.0]hex-3,6-diyl, wherein at least one A is substituted 1,4-phenylene represented by Formula (4-1) or (4-2); Z is a single bond or a bonding group such as alkylene having a carbon number of 1 to 20; Rc is hydrogen, halogen, —CF3 or alkyl having a carbon number of 1 to 5; m is an integer of 1 to 6, and q is 0 or 1.Type: GrantFiled: January 5, 2004Date of Patent: January 2, 2007Assignees: Chisso Petrochemical Corporation, Chisso CorporationInventors: Yasuyuki Sasada, Kazuhiko Saigusa
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Patent number: 7157550Abstract: A purification process of thermoprocessable tetrafluoroethylene (TFE) copolymers comprising the following steps: A) the polymer latex is transformed into gel form, under mechanical stirring, by addition of an acid electrolyte having pH values?2; B) washing of the polymer gel with aqueous solutions having pH from 1 to 7.Type: GrantFiled: March 3, 2004Date of Patent: January 2, 2007Assignee: Ausimont S.p.A.Inventors: Hua Wu, Vincenzo Arcella
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Patent number: 7015368Abstract: A purification process of thermoprocessable tetrafluoroethylene (TFE) copolymers comprising the following steps: A) the polymer latex is transformed into gel form, under mechanical stirring, by addition of an acid electrolyte having pH values ?2; B) washing of the polymer gel with aqueous solutions having pH from 1 to 7.Type: GrantFiled: July 26, 2002Date of Patent: March 21, 2006Assignee: Ausimont S.p.A.Inventors: Hua Wu, Vincenzo Arcella
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Patent number: 6861565Abstract: A process for producing a fluoroalkanol which can easily be industrially practiced with high selectivity, is provided. CHR1R2OH, a radical initiator and CF2?CFRf are continuously supplied and reacted at from 105 to 135° C., and H—(RfCFCF2)n—CR1R2—OH formed, is continuously discharged. Here, each of R1 and R2 is a hydrogen atom or a C1-3 alkyl group, Rf is a fluorine atom or a C1-4 polyfluoroalkyl group, and n is an integer of from 1 to 4.Type: GrantFiled: March 10, 2003Date of Patent: March 1, 2005Assignee: Asahi Glass Company, LimitedInventors: Toshihiko Tohma, Akihiro Wada
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Patent number: 6805920Abstract: This invention provides a polymerizable liquid crystal compound having a large value of &Dgr;n/n, excellent in coating properties on an alignment film and easily aligned. Disclosed is a polymerizable liquid crystal compound having at least one polymerizable reactive group and showing nematic liquid crystal properties, having a &Dgr;n/n value of 0.14 or more wherein n is average refractive index and &Dgr;n is extraordinary light refractive index (ne) minus ordinary light refractive index (no), and being aligned by application onto an alignment film.Type: GrantFiled: April 11, 2002Date of Patent: October 19, 2004Assignees: Nitto Denko Corporation, Takasago International CorporationInventors: Shusaku Nakano, Amane Mochizuki, Yukiharu Iwaya, Shinya Yamada, Tsutomu Hashimoto, Yuji Nakayama, Yoshiki Hasegawa, Ken Suzuki, Tohru Kobayashi
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Patent number: 6710215Abstract: A method of simultaneous and selective prepararation of hexafluoropropylene and octafluorocyclebutane comprising the steps of: (a) thermally decomposing difluorochloromethane to obtain tetrafluoroethylene and then supplying the resulting tetrafluoroethylene into a fluidized bed reactor equipped with a distributor for supplying steam; and (b) supplying steam into a flow of tetrafluoroethylene supplied into the fluidized bed reactor, through a distributor for supplying steam at a certain molar ratio of tetrafluoroethylene/stream, and then performing dimerization of tetrafluoroethylene in the fluidized bed reactor under an atmospheric pressure.Type: GrantFiled: August 14, 2002Date of Patent: March 23, 2004Assignee: Korea Institute of Science and TechnologyInventors: Dong Ju Moon, Moon Jo Chung, Young Soo Kwon, Byoung Sung Ahn
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Patent number: 6670511Abstract: A fluorine-containing diene represented by the formula 1: CF2═CF(CF2)nCXYOCF═CF2 Formula 1 wherein each of X and Y which are independent of each other, is an atom selected from a hydrogen atom, a fluorine atom, a chlorine atom, a bromine atom and an iodine atom, provided that X and Y are not simultaneously hydrogen atoms or fluorine atoms, and n is an integer of from 1 to 3.Type: GrantFiled: May 15, 2002Date of Patent: December 30, 2003Assignee: Asahi Glass Company LimitedInventors: Kimiaki Kashiwagi, Hidenobu Murofushi, Norihide Sugiyama, Masakuni Sato, Atsushi Watakabe
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Patent number: 6653515Abstract: &agr;,&bgr;,&bgr;-Trifluorostyrene and derivatives thereof synthesized in two steps from 1,1,1,2-tetrafluoroethylene. In the first step, 1,1,1,2-tetrafluoroethylene is reacted with a base, a metal salt such as zinc chloride and an optionally amine to form a trifluorovinyl metal complex. In the second step, the trifluorostyrene or derivative is obtained by reacting the trifluorovinyl metal complex with an aryl transfer agent such as, for example, an aryl triflate or an aryl halide, in the presence of a metal catalyst and optionally a coordinating ligand. Both steps may be carried out in one reactor.Type: GrantFiled: December 14, 2001Date of Patent: November 25, 2003Assignee: Ballard Power Systems Inc.Inventors: Charles Stone, Timothy J. Peckham, Donald J. Burton, Anilkumar Raghavanpillai
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Patent number: 6448452Abstract: A polymer which contains monomer units formed by polymerization of a fluorine-containing diene of formula 1: CF2═CF(CF2)nCXYOCF═CF2 Wherein X and Y are hydrogen and chlorine, hydrogen and-bromine, hydrogen and iodine, fluorine and chlorine, fluorine and bromine, fluorine and iodine, chlorine and bromine, chlorine and iodine, bromine and bromine, bromine and iodine, or iodine and iodine and n is an integer from 1 to 3.Type: GrantFiled: April 25, 2001Date of Patent: September 10, 2002Assignee: Asahi Glass Company LimitedInventors: Kimiaki Kashiwagi, Hidenobu Murofushi, Norihide Sugiyama, Masakuni Sato, Atsushi Watakabe
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Patent number: 6396680Abstract: A monolithic capacitor including a sintered body formed from a TiO2-containing reduction-resistant dielectric ceramic material; a plurality of internal electrodes which are formed inside the sintered body, the electrodes being formed of a base metal; and first and second external electrodes which are formed on the sintered body, the internal electrodes being electrically connected to the external electrodes; wherein the amount of Ti contained in a secondary phase of the sintered body is about 2 wt. % or less as TiO2. A process for producing the monolithic capacitor of the present invention is also disclosed.Type: GrantFiled: November 30, 2000Date of Patent: May 28, 2002Assignee: Murata Manufacturing Co., Ltd.Inventors: Toshiki Nishiyama, Takayuki Nishino, Yasunobu Yoneda
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Patent number: 6365676Abstract: The invention concerns a process for the reaction of a perfluoroalkyl iodide of the formula CF3(CF2)h—I, where h is an integer from 4 to 18, with a compound having a terminal olefinic group, which comprises conducting said reaction in an aqueous medium containing 5 to 40% by weight of a water-soluble solvent and in the presence of from 0.02 to 0.5 equivalents of dithionite ion, based on the perfluoroalkyl iodide, at a temperature of from 0 to 40° C. and at a pH greater than 7.0.Type: GrantFiled: October 16, 2000Date of Patent: April 2, 2002Assignee: Ciba Specialty Chemicals CorporationInventors: John Jennings, Ted Deisenroth, Marlon Haniff
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Patent number: 6350925Abstract: A synthesis is provided for &agr;,&bgr;-difluoro-&bgr;-halo-ethenyl aromatic compounds such as &agr;,&bgr;,&bgr;-trifluorostyrenes by a process of reacting CFX2CFXI, wherein each X is independently F or Cl, provided that at least one X is Cl and at least one X is F, with an aromatic compound Ar to form (CFX2CFX)n—Ar, wherein n is 1, 2 or 3, and subsequently dechlorohalogenating this product to form (CFX═CF)n—Ar. Novel synthetic intermediate compounds are provided.Type: GrantFiled: July 31, 1998Date of Patent: February 26, 2002Assignee: 3M Innovative Properties CompanyInventor: George Van Dyke Tiers
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Patent number: 6166156Abstract: Halofluorinated alkylene monomers are made by a method comprising the steps of: (a) subjecting a first polymer which is the reaction product of a fluorinated vinyl monomer and a vinyl comonomer to dehydrohalogenation to form a second polymer; (b) treating the second polymer with an oxidizing agent to form an oxidation product consisting of a .alpha., .omega.-dicarboxylic acid or an ester derivative thereof; and (c) treating said oxidation product with a reducing agent to form a reduction product consisting of a a .alpha., .omega.-diol. Preferably, the first polymer has a structure of --[CH.sub.2 CYZ(CF.sub.2 CFX).sub.n ].sub.m -- wherein X and Y=F, Cl or Br; X and Y may be the same or different; Z=H, F, Cl, Br, alkyl or perfluoroalkyl containing from about 1 to about 10 carbon atoms; n=an integer larger than about 1; and m is an integer between about 2 and about 10.sup.5. The .alpha., .omega.-dicarboxylic acids and .alpha., .omega.-diols produced herein can be directly used as polycondensation monomers.Type: GrantFiled: November 12, 1998Date of Patent: December 26, 2000Inventors: Chengjiu Wu, Baopei Xu, James T. Yardley
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Patent number: 5652147Abstract: There is provided a precisely quantitative measurement method of a hydrocarbonaceous polymerization inhibitor component in a fluorine-containing olefinic monomer, which inhibitor component is contained in the monomer in such a trace amount that it cannot be detected by a gas chromatography. In the method, an ultraviolet absorption spectrum of a concentrated sulfuric acid is measured after it is contacted with the fluorine-containing olefinic monomer and the concentration of the polymerization inhibitor is obtained based on an absorbance of the spectrum and a calibration curve which has been beforehand obtained.Type: GrantFiled: March 20, 1996Date of Patent: July 29, 1997Assignee: Daikin Industries, Ltd.Inventors: Takuo Kawamura, Shigeru Ichiba, Tomizo Soda
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Patent number: 5268516Abstract: The invention relates to a continuous process for the preparation of perfluoroalkyl iodides containing from 4 to 12 carbon atoms by thermal telomerization of tetrafluoroethylene by pentafluoroethyl iodide or heptafluoroisopropyl iodide in a tubular reactor.According to the invention, 30 to 75% of the tetrafluoroethylene is supplied at the head of the reactor; the remainder is introduced at a point in the reactor located between the 2/5 and 3/4 of the length of the tube.The proportion of undesirable heavy telomers is reduced in this way.Type: GrantFiled: January 13, 1993Date of Patent: December 7, 1993Assignee: Elf Atochem S.A.Inventors: Rene Bertocchio, Georges Lacote, Christophe Verge
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Patent number: 5254774Abstract: A process for the oligomerization of hexafluoropropene comprises contacting hexafluoropropene with a catalyst or a mixture of catalysts selected from the group consisting of the cyanide, cyanate, and thiocyanate salts of alkali metals, quaternary ammonium, and quaternary phosphonium, in the presence of polar, aprotic solvent, e.g., acetonitrile. The process of the invention is especially useful for selectively preparing hexafluoropropene dimers, e.g., perfluoro-2-methyl-2-pentene and perfluoro-2-methyl-3-pentene, in good yield by the proper choice of solvent and catalyst.Type: GrantFiled: December 28, 1992Date of Patent: October 19, 1993Assignee: Minnesota Mining and Manufacturing CompanyInventor: Robert A. Prokop
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Patent number: 5162594Abstract: This invention concerns a process for the production of polyfluoroolefins by the catalytic addition of polyfluoroallylic fluorides to fluoroethylenes. 1:1 and 1:2 Adducts such as F-pentene-2 and F-heptene-3 can be formed selectively and reduced further to dihydro- or trihydropolyfluoroalkanes, which are useful as HFC cleaning agents.Type: GrantFiled: October 4, 1991Date of Patent: November 10, 1992Assignee: E. I. du Pont de Nemours and CompanyInventor: Carl G. Krespan
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Patent number: 5145592Abstract: A class of neutral, hydrogen-free liquid or waxy perfluorinated cotelomers is described. The cotelomers contain more than 50% weight of fluorine and are derived from chlorotrifluoroethylene and a member selected from the group consisting of one perfluorinated olefin, one perfluorinated alkylvinyl or polyoxaalkylvinyl ether, where said alkyl radical contains from 1 to 6 carbon atoms and said polyoxaalkyl group contains from 2 to 10 carbon atoms; mixtures of two perfluorinated olefins containing from 2 to 6 carbon atoms, with the proviso that one is tetrafluoroethylene, and a mixture of tetrafluoroethylene with one of said perfluorinated alkylvinyl ethers. The present cotelomers exhibit excellent lubricity, transparency, low compressibility, low refractive index and a high resistance to electrical discharge. The cotelomers are particularly useful as lubricants and hydraulic fluids, as optical media and as insulating materials.Type: GrantFiled: December 17, 1990Date of Patent: September 8, 1992Assignee: Dow Corning CorporationInventor: Gerardo Caporiccio
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Patent number: 5001163Abstract: An organic polymeric material, which is preferably perfluorinated and which comprises a polymeric chain and at least one group pendant from the chain, in which the group pendant from the chain comprises a saturated cyclic group and at least one ion-exchange group or group convertible thereto, and in which the ion-exchange group or group convertible thereto is linked to the polymeric chain through the cyclic group. Also an ion-exchange membrane produced from the polymeric material, an electrolytic cell containing the membrane, vinyl monomers from which the organic polymeric material may be produced and intermediates useful in production of the monomers.Type: GrantFiled: March 1, 1989Date of Patent: March 19, 1991Assignee: Imperial Chemical Industries PLCInventors: Harold C. Fielding, Philip H. Gamlen, Ian M. Shirley
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Patent number: 4668710Abstract: Included are trihalovinyl polyol ethers. The compositions have pendant 1,2,2-trihaloethenyl moieties. The compositions may be low viscosity oils or highly polymeric such as incorporated with a urethane or other polymers. One of the uses of the compositions is as flame retardants which may have high thermal stability and scorch resistance.Type: GrantFiled: December 23, 1985Date of Patent: May 26, 1987Assignee: The Dow Chemical CompanyInventors: Chester E. Pawloski, William J. Kruper, Jr.
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Patent number: 4296265Abstract: Hexafluoropropene oligomers are prepared from hexafluoropropene in a high conversion by contacting gaseous hexafluoropropene with a catalyst comprising an alkali metal fluoride supported on activated charcoal or nickel oxide.Type: GrantFiled: July 18, 1980Date of Patent: October 20, 1981Assignee: Daikin Kogyo Co., Ltd.Inventors: Yohnosuke Ohsaka, Takashi Tohzuka