Including Metal Compound Containing Different Metal Than That Bonded To Carbon Patents (Class 502/154)
  • Patent number: 6956002
    Abstract: A catalyst for olefin polymerization, comprising: a solid catalyst component comprising [A] a solid component having substantially no hydroxyl group, [B] a compound of a transition metal selected from Groups 3-11 of the Periodic Table, and [C] a mixture of an activator compound (C-1) capable of reacting with the transition metal compound [B] to form a metal complex having catalytic activity and an organoaluminum compound (C-2); and [D] an organomagnesium compound soluble in a hydrocarbon solvent which is obtained by reacting (i) an organomagnesium compound represented by the general formula: (Mt)?(Mg)?(R1)a(R2)b wherein Mt is a metal atom belonging to Groups 1-3 of the Periodic Table, R1 and R2 are hydrocarbon groups of 2-20 carbon atoms, and ?, ?, a and b are numerals satisfying the following relationship: 0??, 0<?, 0?a, 0<b, a+b>0, and r?+2?=a+b (where r is a valence of Mt) with (ii) a compound selected from an amine, an alcohol and a siloxane.
    Type: Grant
    Filed: October 15, 2002
    Date of Patent: October 18, 2005
    Assignee: Asahi Kasei Chemicals Corporation
    Inventors: Takashi Nozaki, Akio Fujiwara
  • Patent number: 6949489
    Abstract: The present invention relates to a solid supported catalyst usable for the polymerization of conjugated dienes, to a process for the preparation of said catalyst and to a process for the polymerization of conjugated dienes using said catalyst. The solid supported catalyst according to the invention comprises the reaction product of a) a complex represented by formula M(Ar)(AlX4)3, where M is a rare earth metal selected from among the metals having an atomic number of from 57 to 71, inclusive in Mendeleyev's periodic table of elements, Ar is an aromatic hydrocarbon solvent, Al is aluminum and X is selected from the group consisting of fluorine, chlorine, bromine and iodine, and b) a solid support comprising at least one inorganic metal oxide compound.
    Type: Grant
    Filed: October 11, 2000
    Date of Patent: September 27, 2005
    Assignee: Michelin Recherche et Technique S.A.
    Inventors: Fanny Barbotin, Christophe Boisson, Roger Spitz
  • Patent number: 6943134
    Abstract: A process of producing a bimodal polyolefin composition is described, which includes in one embodiment contacting monomers with a supported bimetallic catalyst composition for a time sufficient to form a bimodal polyolefin composition that includes a high molecular weight polyolefin component and a low molecular weight polyolefin component; wherein the supported bimetallic catalyst includes a first catalyst component that is preferably non-metallocene, and a second catalyst component that includes a metallocene catalyst compound having at least one fluoride or fluorine containing leaving group, wherein the bimetallic catalyst is supported by an enhanced silica, dehydrated at a temperature of 800° C. or more in one embodiment.
    Type: Grant
    Filed: September 20, 2004
    Date of Patent: September 13, 2005
    Assignee: Univation Technologies, LLC
    Inventors: Chi-I Kuo, G. McCullough Laughlin, Pradeep Pandurang Shirodkar, Fred David Ehrman, Porter Shannon, Robert Lynn Santana, Steven K. Ackerman, Daniel Gerard O'Neil
  • Patent number: 6939928
    Abstract: The metallocene compound according to the invention and the olefin polymerization catalyst containing the compound are intended to produce a catalyst capable of preparing an isotactic polymer with a high polymerization activity. The metallocene compound contains a substituted cyclopentadienyl group and a (substituted) fluorenyl group and has a structure wherein these groups are bridged by a hydrocarbon group or the like. The process for preparing a metallocene compound according to the invention is intended to selectively prepare a specific metallocene compound so as not to produce an isomer, and in this process an intermediate product is synthesized by a specific method.
    Type: Grant
    Filed: October 5, 2000
    Date of Patent: September 6, 2005
    Assignee: Mitsui Chemicals, Inc.
    Inventors: Koji Kawai, Masahiro Yamashita, Yasushi Tohi, Nobuo Kawahara, Kenji Michiue, Hiromu Kaneyoshi, Ryoji Mori
  • Patent number: 6930158
    Abstract: New polycyclic cyclopentadiene compounds having the formula (II) wherein the various substituents and symbols R1, R2, R3, R4, R5, R6, R7, Z1 and Z2 and “n” have the meaning specified in the description. These compounds can form metallocene complexes with transition metals, which have shown unusual properties in the (co)polymerization of ethylene and alpha-olefins in general.
    Type: Grant
    Filed: November 12, 2004
    Date of Patent: August 16, 2005
    Assignee: Polimeri Europa S.p.A.
    Inventors: Paolo Biagini, Diego Vigliarolo, Giampietro Borsotti, Roberto Santi
  • Patent number: 6909008
    Abstract: An activator for olefin polymerization catalysts is disclosed. One aspect of the activator is that it comprises a group-13 central atom connected to at least one fluorinated aryl ring that is itself substituted with a silyl acetylenic group. Some embodiments employ a neutral activator and others employ the activator as an anion coupled with a ligand-abstracting cation. These activators are discrete molecules.
    Type: Grant
    Filed: October 29, 2002
    Date of Patent: June 21, 2005
    Assignee: ExxonMobil Chemical Patents Inc.
    Inventor: George Rodriguez
  • Patent number: 6909009
    Abstract: Novel polynuclear organometallic complexes useful as catalysts for the reversible deshydrogenation of alkanes and alkane group are disclosed. The novel compounds comprise a first transition, a second transition metal p-bonded to an ?5-aromatic ligand, and a pincer ligand. The pincer ligand comprises a 6p-electron aromatic ring having at least 2 ring atoms in an 1, 3 relationship bonded each to a neutral Lewis base through a bridge, the bridge being a diradical. The pincer ligand binds the first transition metal through each of the Lewis bases and through the ring atom adjacent to both Lewis bases and p-coordinates the second transition metal through all aromatic ring atoms. The first transition metal may also bond to 2 or 4 hydrogen atoms.
    Type: Grant
    Filed: March 8, 2002
    Date of Patent: June 21, 2005
    Inventor: Avtandil Koridze
  • Patent number: 6903045
    Abstract: A carbonylation catalyst useful for producing esters and carboxylic acids in a vapor phase carbonylation process, wherein the catalyst includes a solid component having a catalytically effective amount of platinum and tin associated with a solid catalyst support material and a vaporous halide promoter component.
    Type: Grant
    Filed: June 19, 2001
    Date of Patent: June 7, 2005
    Assignee: Eastman Chemical Company
    Inventors: Joseph Robert Zoeller, Andy Hugh Singleton, Gerald Charles Tustin, Donald Lee Carver
  • Patent number: 6897272
    Abstract: Disclosed herein are processes for polymerizing ethylene, acyclic olefins, and/or selected cyclic olefins, and optionally selected olefinic esters or carboxylic acids, and other monomers. The polymerizations are catalyzed by selected transition metal compounds, and sometimes other co-catalysts. Since some of the polymerizations exhibit some characteristics of living polymerizations, block copolymers can be readily made. Many of the polymers produced are often novel, particularly in regard to their microstructure, which gives some of them unusual properties. Numerous novel catalysts are disclosed, as well as some novel processes for making them. The polymers made are useful as elastomers, molding resins, in adhesives, etc.
    Type: Grant
    Filed: August 23, 2000
    Date of Patent: May 24, 2005
    Assignee: E.I. Du Pont de Nemours and Company
    Inventors: Maurice S. Brookhart, Lynda Kaye Johnson, Samuel David Arthur, Stephan James McLain
  • Patent number: 6893564
    Abstract: The present invention relates to a novel class of shaped bodies containing metal-organic frameworks. Said metal-organic frameworks comprise at least one metal ion and at least one at least bidentate organic compound and contain at least one type of micro- and mesopores or micro- or mesopores. Said shaped bodies comprise at least one metal-organic framework material and may optionally contain further substances, in particular at least one supporting material.
    Type: Grant
    Filed: May 30, 2002
    Date of Patent: May 17, 2005
    Assignees: BASF Aktiengesellschaft, The Regents of the University of Michigan
    Inventors: Ulrich Mueller, Lisa Lobree, Michael Hesse, Omar Yaghi, Mohamed Eddaoudi
  • Patent number: 6887956
    Abstract: A catalyst system suitable for use in the production of high cis polybutadiene is disclosed. The catalyst system includes a cobalt salt of the formulaCoAx?, where A is a monovalent or divalent anion and x is 1 or 2; an alkyl aluminum chloride compound of the structure R2AlCl, where R is an alkyl group containing 2-8 carbon atoms; a trialkyl aluminum compound of the formula R3Al, where R is an alkyl group containing 2-8 carbon atoms; and a catalytic amount of water.
    Type: Grant
    Filed: October 2, 2001
    Date of Patent: May 3, 2005
    Assignee: Dow Global Technologies Inc.
    Inventors: Adriaan A. van der Huizen, Jean-Marc Potlet, Alain Sabatier, Patrick Le Roy
  • Patent number: 6884747
    Abstract: Linear low density polyethylenes (LLDPEs) that have relatively high melt index ratios (MIR) and relatively high melt strength (MS) are described. This combination of melt properties is achieved by a substantially non-blended LLDPE. Catalysts used to produce these polyethylenes are generally a blend of bridged bisindenyl zirconocene dichlorides, where one zirconocene contains saturated indenyls and the other unsaturated indenyls.
    Type: Grant
    Filed: September 27, 2001
    Date of Patent: April 26, 2005
    Assignee: Univation Technologies, LLC
    Inventors: Armenag Hagop Dekmezian, Natalie Ann Merrill
  • Patent number: 6878830
    Abstract: A process for producing a ring-substituted arene borane which comprises reacting a ring-substituted arene with an HB organic compound in the presence of a catalytically effective amount of an iridium or rhodium complex with three or more substituents, excluding hydrogen, bonded to the iridium or rhodium and a phosphorus organic ligand, which is at least in part bonded to the iridium or rhodium, to form the ring-substituted arene borane. Also provided are catalytic compounds for catalyzing the process comprising an iridium or rhodium complex with three or substituents, excluding hydrogen, bonded to the iridium or rhodium and optionally, a phosphorus organic ligand, which is at least in part bonded to the iridium or rhodium.
    Type: Grant
    Filed: July 12, 2002
    Date of Patent: April 12, 2005
    Assignee: Board of Trustees of Michigan State University
    Inventor: Milton R. Smith, III
  • Patent number: 6867162
    Abstract: The present invention is directed to double metal cyanide catalysts (“DMC”) which are prepared by combining i) at least one metal salt; ii) at least one metal cyanide salt; iii) at least one organic complexing ligand; iv) at least one alkali metal salt; and, optionally, v) at least one functionalized polymer under conditions sufficient to form a catalyst; and adding a sufficient amount of the at least one alkali metal salt to the catalyst so formed in an amount such that the catalyst includes the at least one alkali metal salt in an amount of from about 0.4 to about 6 wt. % based on the total weight of the catalyst. The polyols produced in the presence of the catalysts of the present invention have reduced levels of high molecular weight tail.
    Type: Grant
    Filed: November 19, 2003
    Date of Patent: March 15, 2005
    Assignees: Bayer MaterialScience LLC, Bayer Antwerpen, J.V.
    Inventors: Bi Le-Khac, Wie Wang
  • Patent number: 6864208
    Abstract: A catalyst solid for olefin polymerization comprising A) at least one magnesium halide, B) at least one metallocene complex and C) at least one compound capable of forming metallocenium ions, is prepared by i) firstly preparing finely divided support particles consisting of the magnesium halide A) and an C1-C8-alcohol having a mean particle diameter of from 1 to 200 ?m from an adduct of the magnesium halide A) and a C1-C8-alcohol, where the adduct contains from 1.5 to 5 mol of the C1-C8-alcohol per mole of magnesium halide, ii) then depositing the compound C) capable of forming metallocenium ions on the finely divided support particles and iii) subsequently bringing the reaction product hereby obtained into contact with the metallocene complex B). This catalyst solid can be used for the polymerization or copolymerization of olefins.
    Type: Grant
    Filed: December 11, 2000
    Date of Patent: March 8, 2005
    Assignee: Basell Polyolefine GmbH
    Inventors: Carsten Süling, Wolf Spaether, Nicola Paczkowski, Joachim Rösch, Joachim Wulff-Döring, Wolfgang Bidell
  • Patent number: 6835687
    Abstract: The invention provides an improved process for the preparation of double metal cyanide (DMC) catalysts for the preparation of polyether polyols by polyaddition of alkylene oxides on to starter compounds containing active hydrogen atoms, in which aqueous solutions of a metal salt and a metal cyanide salt are first reacted in the presence of an organic complexing ligand and optionally one or more further complex-forming components to form a DMC catalyst dispersion, this dispersion is then filtered, the filter cake is subsequently washed with one or more aqueous or non-aqueous solutions of the organic complexing ligand and optionally one or more further complex-forming components by a filter cake washing and the washed filter cake is finally dried, after an optional pressing out or mechanical removal of moisture.
    Type: Grant
    Filed: March 5, 2003
    Date of Patent: December 28, 2004
    Assignee: Bayer Aktiengesellschaft
    Inventors: Jörg Hofmann, Stephan Ehlers, Bernd Klinksiek, Thorsten Fechtel, Matthias Ruhland, Jürgen Scholz, Franz Föhles, Ulrich Esser
  • Publication number: 20040248728
    Abstract: A compound of formula I: 1
    Type: Application
    Filed: August 19, 2003
    Publication date: December 9, 2004
    Inventors: Michael Chi-Wang Chan, Chi-Fai Kui
  • Publication number: 20040247988
    Abstract: A catalyst having catalytically active material supported on a carrier matrix. The catalytically active material may be a mixed-valence, nanoclustered oxide(s), an organometallic material or a combination thereof. The supported catalytic material is particularly useful for catalyzing oxygen reduction in a fuel cell, such as an alkaline fuel cell.
    Type: Application
    Filed: June 9, 2003
    Publication date: December 9, 2004
    Inventors: Stanford R. Ovshinsky, Cristian Fierro, Benjamin Reichman, William Mays, James Strebe, Michael A. Fetcenko, Avram Zallen, Tim Hicks
  • Publication number: 20040235646
    Abstract: The invention provides supported catalyst and methods for making and using the same, which are characterized as employing organometallic Group 4-10 catalysts with specially selected dienes, which, when combined with a cocatalyst, result in a supported catast which has improved kinetic profiles in the gas polymerization process.
    Type: Application
    Filed: July 1, 2004
    Publication date: November 25, 2004
    Applicant: BP Chemical Limited
    Inventors: Edmund M. Carnahan, David R. Neithamer, Ravi B. Shankar
  • Patent number: 6815529
    Abstract: This invention relates to a catalyst for producing aliphatic polycarbonate, which is composed of a rare-earth coordination compound; an alkyl metal compound; a polyol; and a carbonate. The catalytic efficiency of the catalyst of the present invention is more than 8×104 g polymer/mol RE(RE is rare earth metal). The number average molecular weight of the polymer is higher than 30,000. The degree of carbon dioxide fixation is more than 42 wt % and the content of alternative sequence structure exceeds 97%.
    Type: Grant
    Filed: August 29, 2001
    Date of Patent: November 9, 2004
    Assignee: Changchun Institute of Applied Chemistry Chinese Academy of Sciences
    Inventors: Xiaojiang Zhao, Xianhong Wang, Fosong Wang
  • Publication number: 20040214716
    Abstract: Catalysts useful for polymerizing olefins are disclosed. The catalysts comprise an activator and a triple-decker bimetallic complex. The complex includes two Group 3-10 transition metals and a delocalized dianionic ligand that is pi-bonded to each of the metals. The behavior of the catalysts can be modified by choice of each metal, by the choice of the dianionic ligand, or by choice of the ancillary ligands. The invention provides a new way to make a large variety of catalyst systems.
    Type: Application
    Filed: April 23, 2003
    Publication date: October 28, 2004
    Inventors: Sandor Nagy, Joel A. Mutchler
  • Publication number: 20040214715
    Abstract: A catalyst system useful for polymerizing olefins is disclosed. The catalyst system includes an organometallic complex that incorporates a Group 3 to 10 transition metal and a hydroxyl-depleted calixarene ligand that is chelated to the metal. Molecular modeling studies reveal that organometallic complexes incorporating such calixarene ligands, when combined with an activator such as MAO, should actively polymerize olefins.
    Type: Application
    Filed: April 23, 2003
    Publication date: October 28, 2004
    Inventor: Sandor Nagy
  • Patent number: 6809057
    Abstract: An olefin polymerization catalyst system, comprising a catalyst represented by the general formula CrR4, wherein each R is independently a hydrocarbyl or substituted hydrocarbyl, with the proviso that R may not be a cyclopentadienyl group, an activator represented by the general formula, MQ2, where M is a Group II metal, where each Q is independently an alkyl, or substituted alkyl; and a support. The support may be organic or inorganic. Ethylene and one or more olefins may be polymerized by the catalyst system.
    Type: Grant
    Filed: February 10, 2003
    Date of Patent: October 26, 2004
    Assignee: ExxonMobil Chemical Patents Inc.
    Inventors: Zerong Lin, Robert T. Li, Anthony N. Speca, Stanley J. Katzen, David H. McConville
  • Publication number: 20040209767
    Abstract: A contact product obtained by a process comprising the step of contacting a compound (a) represented by the formula, M1L1r, a compound (b) represented by the formula, R1s-1T1H a compound (c) represented by the formula, R2t-2T2H2, and a nonionic surfactant (d) having no active hydrogen; a catalyst component for addition polymerization comprising said contact product; a catalyst for addition polymerization obtained by a process comprising the step of contacting said catalyst component with a compound of a metal selected from the group consisting of metals of the Groups 3 to 12 and Lanthanide Series of the Periodic Table, and optionally an organoaluminum compound; and a process for producing an addition polymer comprising the step of polymerizing an addition polymerizable monomer in the presence of said catalyst.
    Type: Application
    Filed: January 20, 2004
    Publication date: October 21, 2004
    Applicant: SUMITOMO CHEMICAL COMPANY, LIMITED
    Inventor: Kazuo Takaoki
  • Publication number: 20040209763
    Abstract: A metal compound obtained by a process comprising the step of contacting, in a specific ratio, a compound represented by the formula BiL1r, a compound represented by the formula R1s-1TH, and a compound represented by the formula R23-nJ(OH)n; a catalyst component for addition polymerization comprising the metal compound; a catalyst for addition polymerization using the catalyst component; and a process for producing an addition polymer using the catalyst.
    Type: Application
    Filed: January 14, 2004
    Publication date: October 21, 2004
    Applicant: SUMITOMO CHEMICAL COMPANY, LIMITED
    Inventor: Kazuo Takaoki
  • Patent number: 6800582
    Abstract: The present invention provides a process for preparing amino functionalized diene polymers with 1,4-trans linkage content equal to or greater than 70%. The invention also concerns polymers of such type, a rubber composition and a tire casing containing those polymers. The process of preparation according to the invention comprises polymerizing at least one diene monomer by means of a lithium catalytic system, which comprises at least one hydrocarbon solvent, one compound A of a IIIA group metal, one compound B of an alkaline earth metal and one aminolithium initiator C. Amino functionalized diene polymers with high 1,4-trans linkage content according to the invention are such that the amino function, situated at the end of the polymer chain, is a tertiary amino function, the rate of functionalization of said polymers being equal to or greater than 50% and the 1,4-trans linkage content being equal to or greater than 70%.
    Type: Grant
    Filed: March 28, 2003
    Date of Patent: October 5, 2004
    Assignee: Michelin Recherche et Technique S.A.
    Inventors: Jean-Michel Favrot, Philippe Laubry
  • Publication number: 20040192541
    Abstract: The invention relates to a catalyst component and a catalyst system for the preparation of high molecular weight ethylene or alpha-olefin homopolymers, ethylene-alpha-olefin copolymers, terpolymers or tetrapolymers, in a polymerization process, which is expediently effected in solution, at elevated temperature, preferably at least 80 DEG C. The catalyst system comprises a group 4-6 metal, preferably group 4 metal, a cyclic ligand (such as a cyclopentadienyl-type ligand), which forms a delocalized pi-bond with the metal M, a monohapto bonded 1,3-diaza-2-imino heterocyclic ligand (such as an iminoimidazolidine-type ligand) and anionic ligands and a catalyst activator coupound.
    Type: Application
    Filed: March 23, 2004
    Publication date: September 30, 2004
    Inventor: Winfried Peter Kretschmer
  • Publication number: 20040186009
    Abstract: A catlyst component obtained by a process comprising contacting (a), (b) and (c) described below, a catalyst for addition polymerization using the catalyst component, and a process for producing an addition polymer with the catalyst for addition polymerization:
    Type: Application
    Filed: December 23, 2003
    Publication date: September 23, 2004
    Inventors: Kazuo Takaoki, Yoshiya Okado
  • Patent number: 6794326
    Abstract: A catalyst system for the polymerization of ethylene, comprising a particulate inorganic oxide supporting a chromium oxide being in a reduced oxidation state and a metallocene compound having the formula Cp2ZrR′R″, wherein each Cp, being equal or different, is an unsubstituted or substituted cyclopentadienyl compound, and R′ and R′, independent of each other, are selected from the group comprising alkyls having 1 to 6 carbon atoms, unsubstituted or substituted benzyl, and phenoxy substituted with alkyls having 1 to 6 carbon atoms; or R′ or R″ may be a halide.
    Type: Grant
    Filed: November 27, 2000
    Date of Patent: September 21, 2004
    Assignee: Borealis Technology Oy
    Inventors: Arild Follestad, Klaus-Joachim Jens, Richard Blom, Ivar Martin Dahl
  • Publication number: 20040176241
    Abstract: Catalyst systems that have a benzoindenoindolyl ligand are disclosed. The catalysts are useful for olefin polymerizations. They have high activity and are less susceptible to decreased activity with changes in activator level or changes in polymerization temperature. The resultant polymers have low polydispersity. A new method of preparing N-alkyldihydroindenoindoles is also disclosed. N-alkyldihydroindenoindoles are useful precursors for the benzoindenoindolyl ligand.
    Type: Application
    Filed: March 4, 2003
    Publication date: September 9, 2004
    Inventors: Sandor Nagy, Barbara M. Tsuie, Alexandr M. Genaev, Vyacheslav G. Shubin
  • Publication number: 20040176648
    Abstract: Disclosed is a new catalyst composition comprising a bimetallic Co—Fe catalyst, optionally complexed with a ligand selected from a N-heterocycle, phosphine, or porphorine ligand, that provides a lower cost alternative for the one step synthesis of 1,3-propanediol (1,3-PDO) from ethylene oxide and synthesis gas. For example, a catalyst containing cobalt carbonyl: iron carbonyl with no ligand, or a catalyst containing a cobalt carbonyl: octaethylporphine iron acetate provide moderate yields of 1,3-PDO in a one step synthesis under mild conditions.
    Type: Application
    Filed: March 1, 2004
    Publication date: September 9, 2004
    Inventors: John Frederick Knifton, Talmadge Gail James, Lynn Henry Slaugh, Paul Richard Weider, Kevin Dale Allen, Joseph Broun Powell
  • Publication number: 20040176242
    Abstract: The present invention provides a catalyst for olefin polymerization having high olefin polymerization activity without being accompanied by generation of an adhered polymer on the wall of a polymerization reactor and the wall of pipe line and generation of a blocking massive polymer, and capable of manufacturing an olefin polymer industrially and stably for a long period of time.
    Type: Application
    Filed: December 29, 2003
    Publication date: September 9, 2004
    Inventors: Yoshiyuki Ishihama, Toshihiko Sugano
  • Patent number: 6787616
    Abstract: A solid catalyst for olefin polymerization, which comprises a silica carrier (A) having a specific surface area of from 600 to 850 m2/g, a pore volume of from 0.1 to 0.8 ml/g and an average particle size of from 2 to 12 &mgr;m, and an organoaluminum-oxy compound (B) and a Group IVB transition metal compound (C) containing a ligand having a cyclopentadienyl skeleton, supported on the carrier (A).
    Type: Grant
    Filed: June 18, 2003
    Date of Patent: September 7, 2004
    Assignee: Maruzen Petrochemical Co., Ltd.
    Inventors: Toshifumi Takemori, Masashi Iida, Minoru Iijima, Yoshihisa Hayashida, Masao Kawahara
  • Publication number: 20040171479
    Abstract: A catalyst is disclosed for the polymerization and co-polymerization of olefins with functionalized monomers. The catalyst is formed from a combination of two neutral metal complexes, L(iPr2)M(CH2Ph)(PMe3)[L=N-(2,6-diisopropylphenyl)-2-(2,6-diisopropylphenylimino)propanamide] and M(COD)2(COD=cyclooctadiene). The catalyst displays a unique mode of action and performs at ambient conditions producing high molecular weight polyolefins and co-polymers with functional groups. The polymerized olefins include ethylene, &agr;-olefins and functionalized olefins.
    Type: Application
    Filed: February 28, 2003
    Publication date: September 2, 2004
    Inventors: Guillermo C. Bazan, Prasenjit Ghosh
  • Publication number: 20040167015
    Abstract: Broad molecular weight polyethylene and polyethylene having a bimodal molecular weight profile can be produced with chromium oxide based catalyst systems employing alkyl silanols. The systems may also comprise various organoaluminum compounds. Catalyst activity and molecular weight of the resulting polyethylene may also be tuned using the present invention.
    Type: Application
    Filed: January 22, 2004
    Publication date: August 26, 2004
    Inventors: Kevin J. Cann, Minghui Zhang, John H. Moorhouse, Maria A. Apecetche
  • Patent number: 6777567
    Abstract: Compounds of the formula (I) and (Ia) in the form of racemates, mixtures of diastereomers or in essentially enantiomerically pure form, (I), (Ia), where R is hydrogen, C1-C8alkyl, C5-C12cycloakyl, phenyl or phenyl substituted by from 1 to 3 C1-C4alky or C1-C4alkoxy groups; n is 0 or an integer from 1 to 4 and R1 are identical or different substituents selected from the group consisting of C1-C4alkyl, C1-C4fluoroalkyl and C1-C4alkoxy; X1 and X2 are each, independently of one another, secondary phosphino; T is C6-C20arylene or C3-C16heteroarylene; and X2 is bound in the ortho position relative to the T-cyclopentadienyl bond.
    Type: Grant
    Filed: December 31, 2002
    Date of Patent: August 17, 2004
    Assignee: Solvias AG
    Inventors: Walter Weissensteiner, Thomas Sturm, Felix Spindler
  • Patent number: 6777566
    Abstract: A process for producing platinum alkenyl polysiloxane complex compounds, especially platinum divinyltetramethyldisiloxane, by reacting a haloplatinum compound with at least one alkenyl polysiloxane in the initial presence of platinum in the form of a platinum complex compound as an autocatalyst and in the initial presence of at least one base in an organic solvent or mixture of organic solvents that can be oxidized by the haloplatinum compound.
    Type: Grant
    Filed: October 16, 2002
    Date of Patent: August 17, 2004
    Assignee: W. C. Heraeus GmbH & Co. KG
    Inventors: Ramona Reitz, Richard Walter
  • Publication number: 20040157730
    Abstract: A catalyst system useful for polymerizing olefins is disclosed. The catalyst system comprises an activator and a bimetallic complex that incorporates two Group 3 to 10 transition metal atoms, which may be the same or different, and a neutral or anionic indigoid ligand. By proper selection of the indigoid skeleton and by modifying its substituents and transition metal centers, polyolefin makers can fine-tune the bimetallic complexes to control activity, enhance comonomer incorporation, and optimize polymer properties.
    Type: Application
    Filed: February 6, 2003
    Publication date: August 12, 2004
    Inventors: Gregory G. Hlatky, Jonathan L. Schuchardt
  • Publication number: 20040157729
    Abstract: An olefin polymerization catalyst system, comprising a catalyst represented by the general formula CrR4, wherein each R is independently a hydrocarbyl or substituted hydrocarbyl, with the proviso that R may not be a cyclopentadienyl group, an activator represented by the general formula, MQ2, where M is a Group II metal, where each Q is independently an alkyl, or substituted alkyl; and a support. The support may be organic or inorganic. Ethylene and one or more olefins may be polymerized by the catalyst system.
    Type: Application
    Filed: February 10, 2003
    Publication date: August 12, 2004
    Inventors: Zerong Lin, Robert T. Li, Anthony N. Speca, Stanley J. Katzen, David H. McConville
  • Publication number: 20040157728
    Abstract: Copolymerization of Fe(II) or Co(II) pyridine diimine complexes containing olefinic substituents on aryl groups with styrene in the presence of a radical initiator results in polymerized late transition metal catalysts which can be used for olefin polymerization or oligomerization. These catalysts have high catalyst activity for olefin polymerization or oligomerization.
    Type: Application
    Filed: October 24, 2003
    Publication date: August 12, 2004
    Inventors: Guo-Xin Jin, Zerong Lin, Robert J. Wittenbrink, Chang-Kun Liu
  • Publication number: 20040147389
    Abstract: A complex of transition metal Ti, Fe, Co, Ni, Cr, Mn, Ta, Rh, Y, Sc, Ru, Pd, Zr, Hf, V or Nb and a mono-, bi-, tri-, or tetra-dentate ligand, wherein at least one of the donor atoms of the ligand is a nitrogen atom N with a 5-membered heterocyclic substituent joined to the N by a carbon atom. The complex is preferably formula (I) wherein R5—N-G-X1 is a bi-, tri.
    Type: Application
    Filed: November 14, 2003
    Publication date: July 29, 2004
    Inventors: Simon Michael Green, Peter James Maddox
  • Publication number: 20040138055
    Abstract: Bridged catalyst component in which a bridge spans two cylcopentadienyl or aromatic groups. The Cp or aromatic groups are attached to the same or different heteroatoms of the bridge, which heteroatoms are also bonded to a metal. A catalyst system can be made by contacting the bridged component with a cocatalyst. Polymerization of olefins can be catalyzed by the system.
    Type: Application
    Filed: October 23, 2003
    Publication date: July 15, 2004
    Applicant: Fina Technology, Inc.
    Inventors: Abbas Razavi, Margarito Lopez, Didier Baekelmans, Vladimir Marin
  • Publication number: 20040138056
    Abstract: A series of novel late transition metal catalysts for olefin oligomerization have been invented. The catalysts demonstrate high activity and selectivity for linear &agr;-olefins.
    Type: Application
    Filed: October 24, 2003
    Publication date: July 15, 2004
    Inventors: Baiyi Zhao, Smita Kacker, Jo Ann Marie Canich
  • Patent number: 6753288
    Abstract: Organolead compounds such as tetraethyllead are useful in catalyst compositions for the oxidative carbonylation of hydroxyaromatic compounds to diaryl carbonates. They are employed in combination with a Group 8, 9, or 10 metal such as palladium, or a compound thereof, and a bromide or chloride such as tetraethylammonium bromide.
    Type: Grant
    Filed: June 6, 2002
    Date of Patent: June 22, 2004
    Assignee: General Electric Company
    Inventors: Kirill Vladimirovich Shalyaev, Bruce Fletcher Johnson
  • Patent number: 6750302
    Abstract: A polymerization catalyst is disclosed, wherein the catalyst comprises: (a) a metallocene of Ti, Zr or Hf, (b) an organoaluminum compound, and (c) a treated solid oxide support which comprises fluorine and chromium.
    Type: Grant
    Filed: December 16, 1999
    Date of Patent: June 15, 2004
    Assignee: Phillips Petroleum Company
    Inventors: Max P. McDaniel, Kathy S. Collins, Elizabeth A. Benham, Anthony P. Eaton, Michael D. Jensen, Joel L. Martin, Gil R. Hawley, Eric T. Hsieh
  • Publication number: 20040106514
    Abstract: Catalyst systems useful for olefin polymerization are disclosed. The catalysts include a bimetallic complex that incorporates two linked indenoindolyl groups, each of which is pi-bonded through its cyclopentadienyl ring to one of the metals Compared with conventional indenoindolyl complexes, the bimetallic complexes of the invention have enhanced ability to give polyolefins with desirably low melt indices. Certain bimetallic indenoindolyl complexes also provide a way to broaden polymer molecular weight distribution and thereby improve processability simply by regulating the amounts of comonomer and activator used in the polymerization.
    Type: Application
    Filed: December 3, 2002
    Publication date: June 3, 2004
    Inventors: Sandor Nagy, Barbara M. Tsuie, William J. Sartain
  • Publication number: 20040092678
    Abstract: The present invention relates to an improved supported Ziegler-Natta catalyst especially useful for the olefin polymerisation, said catalyst comprising a carrier, an organomagnesium compound, a borate compound, and one transition metal compound.
    Type: Application
    Filed: December 11, 2003
    Publication date: May 13, 2004
    Inventor: Stephen John Dossett
  • Patent number: 6734266
    Abstract: A supported catalyst for olefin polymerization comprises a combination of a sulfated metal oxide support, an aluminoxane and an organometallic complex of a group 4 metal. The sulfated metal oxide may be quickly and conveniently prepared by, for example, contacting the precursor metal oxide with a sulfuric acid. The supported catalyst of this invention is highly active for olefin polymerization in comparison to conventional catalysts which are prepared with non-sulfated supports.
    Type: Grant
    Filed: February 13, 2002
    Date of Patent: May 11, 2004
    Assignee: Nova Chemicals (International) S.A.
    Inventors: Xiaoliang Gao, P. Scott Chisholm, Matthew Gerald Kowalchuk, Robert D. Donaldson
  • Patent number: 6730755
    Abstract: A supported catalyst for olefin polymerization comprises a combination of a novel metal oxide support and an activator which is an aluminoxane or a boron activator. The novel metal oxide support of this invention is a conventional particulate metal oxide support material (such as silica or alumina) which has been treated with a halosulfonic acid. A catalyst system which contains this novel catalyst support and a transition metal catalyst is highly active for olefin polymerization (in comparison to prior art catalyst systems which use a conventional metal oxide support).
    Type: Grant
    Filed: February 7, 2002
    Date of Patent: May 4, 2004
    Assignee: Nova Chemicals (Internation) S.A
    Inventors: Xiaoliang Gao, P. Scott Chisholm, Matthew Gerald Kowalchuk, Robert D. Donaldson
  • Publication number: 20040077487
    Abstract: There are provided (asymmetric) complex catalysts comprising metal complexes and Lewis acids as components, the metal complex being of formula (1): 1
    Type: Application
    Filed: September 8, 2003
    Publication date: April 22, 2004
    Inventor: Kazuaki Sasaki