Patents by Inventor Stephan J. McLain
Stephan J. McLain has filed for patents to protect the following inventions. This listing includes patent applications that are pending as well as patents that have already been granted by the United States Patent and Trademark Office (USPTO).
-
Patent number: 8026333Abstract: This invention relates to a protected organotin-based catalyst system for polyurethane synthesis that is useful in coatings applications. The catalyst has a formula according to; R1aR2bR3cSn[CH(OX)R4]d, wherein R1, R2, and R3 are the same or different and represent an optionally substituted hydrocarbyl, aromatic, alkoxide, amide, halide or stannyl group, R4 represents an optionally substituted hydrocarbyl or optionally substituted aryl group. a, b, and c are independently 0, 1, 2, or 3; d is 1, 2 or 3; and a+b+c+d=4; and X is an acid-labile or moisture-labile protecting group. When a coating mixture comprising the catalyst is sprayed and/or applied to a substrate as a thin film in air, the catalyst is activated. For solvent-based refinish systems comprising hydroxyl and isocyanate species at high solids levels, the catalyst system therefore provides extended viscosity stability, i.e., pot life.Type: GrantFiled: December 13, 2006Date of Patent: September 27, 2011Assignee: E. I. du Pont de Nemours and CompanyInventors: Jerald Feldman, Stephan J. McLain, Robert John Barsotti, James William O'Neil
-
Patent number: 7998895Abstract: Transition metal complexes of selected monoanionic phosphine ligands, which also contain a selected Group 15 or 16 (IUPAC) element and which are coordinated to a Group 3 to 11 (IUPAC) transition metal or a lanthanide metal, are polymerization catalysts for the (co)polymerization of olefins such as ethylene and ?-olefins, and the copolymerization of such olefins with polar group-containing olefins. These and other nickel complexes of neutral and monoanionic bidentate ligands copolymerize ethylene and polar comonomers, especially acrylates, at relatively high ethylene pressures and surprisingly high temperatures, and give good incorporation of the polar comonomers and good polymer productivity. These copolymers are often unique structures, which are described.Type: GrantFiled: August 1, 2008Date of Patent: August 16, 2011Assignee: E.I. du Pont de Nemours and CompanyInventors: Lin Wang, Elisabeth M. Hauptman, Lynda Kaye Johnson, Elizabeth Forrester McCord, Stephan J. McLain, Ying Wang
-
Patent number: 7977446Abstract: This invention relates to an organotin-based catalyst system for polyurethane synthesis that is useful in coatings applications. The catalyst has low activity in the absence of oxygen. When a coating mixture comprising the catalyst is sprayed and/or applied to a substrate as a thin film in air, the catalyst is activated. For solvent-based refinish systems comprising hydroxyl and isocyanate species at high solids levels, the catalyst system therefore provides extended viscosity stability, i.e., pot life.Type: GrantFiled: June 16, 2005Date of Patent: July 12, 2011Assignee: E. I. du Pont de Nemours and CompanyInventors: Jerald Feldman, Stephan J. McLain
-
Publication number: 20100222531Abstract: Transition metal complexes of selected monoanionic phosphine ligands, which also contain a selected Group 15 or 16 (IUPAC) element and which are coordinated to a Group 3 to 11 (IUPAC) transition metal or a lanthanide metal, are polymerization catalysts for the (co)polymerization of olefins such as ethylene and ?-olefins, and the copolymerization of such olefins with polar group-containing olefins. These and other nickel complexes of neutral and monoanionic bidentate ligands copolymerize ethylene and polar comonomers, especially acrylates, at relatively high ethylene pressures and surprisingly high temperatures, and give good incorporation of the polar comonomers and good polymer productivity. These copolymers are often unique structures, which are described.Type: ApplicationFiled: May 13, 2010Publication date: September 2, 2010Applicant: E. I. DU PONT DE NEMOURS AND COMPANYInventors: Lin Wang, Elisabeth M. Hauptman, Lynda Kaye Johnson, Elizabeth Forrester McCord, Stephan J. McLain, Ying Wang
-
Publication number: 20100136251Abstract: This invention relates to a protected organotin-based catalyst system for polyurethane synthesis that is useful in coatings applications. The catalyst has low activity in the absence of oxygen. When a coating mixture comprising the catalyst is sprayed and/or applied to a substrate as a thin film in air, the catalyst is activated. For solvent-based refinish systems comprising hydroxyl and isocyanate species at high solids levels, the catalyst system therefore provides extended viscosity stability, i.e., pot life.Type: ApplicationFiled: December 13, 2006Publication date: June 3, 2010Inventors: Jerald Feldman, Stephan J. Mclain, Robert John Barsotti, James William O'Neil
-
Publication number: 20100137487Abstract: This invention relates to an organotin-based catalyst system for polyurethane synthesis that is useful in coatings applications. The catalyst has low activity in the absence of oxygen. When a coating mixture comprising the catalyst is sprayed and/or applied to a substrate as a thin film in air, the catalyst is activated. For solvent-based refinish systems comprising hydroxyl and isocyanate species at high solids levels, the catalyst system therefore provides extended viscosity stability, i.e., pot life.Type: ApplicationFiled: February 2, 2010Publication date: June 3, 2010Inventors: Jerald Feldma, Stephan J. McLain
-
Patent number: 7683004Abstract: This invention relates to an organotin-based catalyst system for polyurethane synthesis that is useful in coatings applications. The catalyst has low activity in the absence of oxygen. When a coating mixture comprising the catalyst is sprayed and/or applied to a substrate as a thin film in air, the catalyst is activated. For solvent-based refinish systems comprising hydroxyl and isocyanate species at high solids levels, the catalyst system therefore provides extended viscosity stability, i.e., pot life.Type: GrantFiled: June 16, 2005Date of Patent: March 23, 2010Assignee: E.I. du Pont de Nemours and CompanyInventors: Jerald Feldman, Stephan J. McLain
-
Publication number: 20100029469Abstract: Transition metal complexes of selected monoanionic phosphine ligands, which also contain a selected Group 15 or 16 (IUPAC) element and which are coordinated to a Group 3 to 11 (IUPAC) transition metal or a lanthanide metal, are polymerization catalysts for the (co)polymerization of olefins such as ethylene and ?-olefins, and the copolymerization of such olefins with polar group-containing olefins. These and other nickel complexes of neutral and monoanionic bidentate ligands copolymerize ethylene and polar comonomers, especially acrylates, at relatively high ethylene pressures and surprisingly high temperatures, and give good incorporation of the polar comonomers and good polymer productivity. These copolymers are often unique structures, which are described.Type: ApplicationFiled: August 1, 2008Publication date: February 4, 2010Applicant: E. I. du Pont de Nemours and CompanyInventors: LIN WANG, Elisabeth M. Hauptman, Lynda Kaye Johnson, Elizabeth Forrester McCord, Stephan J. McLain, Ying Wang
-
Publication number: 20090143550Abstract: Ethylene and allyl- or vinylsilanes are efficiently copolymerized by certain late transition metal complexes containing selected bidentate or tridentate ligands. The resulting novel polymers may be crosslinked by moisture when vinylsilane contains groups bound to silicon which are hydrolyzable. The polymers are useful for wire coating, crosslinked foams, pipes, and other uses.Type: ApplicationFiled: December 19, 2007Publication date: June 4, 2009Inventors: Steven Dale Ittel, Lynda Kaye Johnson, Lin Wang, Ying Wang, Elizabeth Forrester McCord, Chatherine E. Radzewich, Stephan J. McLain, Karl J. Sweetman, Alison Margaret Anne Bennett, Alex Sergey Ionkin, Rinaldo S. Schiffino
-
Patent number: 7348388Abstract: Ethylene and allyl- or vinylsilanes are efficiently copolymerized by certain late transition metal complexes containing selected bidentate or tridentate ligands. The resulting novel polymers may be crosslinked by moisture when vinylsilane contains groups bound to silicon which are hydrolyzable. The polymers are useful for wire coating, crosslinked foams, pipes, and other uses.Type: GrantFiled: November 15, 2002Date of Patent: March 25, 2008Assignee: E.I. du Pont de Nemours and CompanyInventors: Steven Dale Ittel, Lynda Kaye Johnson, Lin Wang, Ying Wang, Elizabeth Forrester McCord, Catherine E. Radzewich, Stephan J. Mclain, Karl J. Sweetman, Alison Margaret Anne Bennett, Alex Sergey Ionkin, Rinaldo S. Schiffino
-
Patent number: 6780949Abstract: Olefin polymerizations employing a complex of a Group 8, 9, or 10 transition metal with a bidentate ligand as part of the polymerization catalyst system are improved by adding to the polymerization a silicon compound in which at least one atom of a Group 15 or 16 element is bound to a silicon atom. The polymerizations often have increased polymer productivity and/or the polymerization catalyst has a longer half life.Type: GrantFiled: November 15, 2002Date of Patent: August 24, 2004Assignee: E. I. du Pont de Nemours and CompanyInventors: Lynda Kaye Johnson, Stephan J. Mclain, Karl J. Sweetman
-
Publication number: 20030212226Abstract: Ethylene and allyl- or vinylsilanes are efficiently copolymerized by certain late transition metal complexes containing selected bidentate or tridentate ligands. The resulting novel polymers may be crosslinked by moisture when vinylsilane contains groups bound to silicon which are hydrolyzable. The polymers are useful for wire coating, crosslinked foams, pipes, and other uses.Type: ApplicationFiled: November 15, 2002Publication date: November 13, 2003Inventors: Steven Dale Ittel, Lynda Kaye Johnson, Lin Wang, Ying Wang, Elizabeth Forrester McCord, Catherine E. Radzewich, Stephan J. McLain, Karl J. Sweetman, Alison Margaret Anne Bennett, Alex Sergey Ionkin, Rinaldo S. Schiffino
-
Publication number: 20030130450Abstract: Olefin polymerizations employing a complex of a Group 8, 9, or 10 transition metal with a bidentate ligand as part of the polymerization catalyst system are improved by adding to the polymerization a silicon compound in which at least one atom of a Group 15 or 16 element is bound to a silicon atom. The polymerizations often have increased polymer productivity and/or the polymerization catalyst has a longer half life.Type: ApplicationFiled: November 15, 2002Publication date: July 10, 2003Inventors: Lynda Kaye Johnson, Stephan J. Mclain, Karl J. Sweetman
-
Publication number: 20030055186Abstract: Substituted cyclopentenes, such as alkyl cyclopentenes, are polymerized by selected &agr;-imine complexes of nickel and palladium. The polymers are useful as molding resins or elastomers. Also disclosed herein are novel catalysts for the polymerization of cyclopentenes to form novel higher melting homopolycyclopentenes.Type: ApplicationFiled: April 2, 2001Publication date: March 20, 2003Inventors: Stephan J. McLain, Elizabeth F. McCord, Alison M. Bennett, Steven D. Ittel, Mark F. Teasley
-
Patent number: 5304666Abstract: A process for preparing the superconductive material MBa.sub.2 Cu.sub.3 O.sub.x, M being, inter alia, yttrium and x being from about 6.5-7 and a precursor material MBa.sub.2 Cu.sub.3 O.sub.y, y being from about 6-6.5, by controlled heating and cooling in a controlled atmosphere.Type: GrantFiled: April 7, 1992Date of Patent: April 19, 1994Assignee: E. I. Du Pont de Nemours and CompanyInventor: Stephan J. McLain
-
Patent number: 5292859Abstract: A process for polymerizing lactide and up to 20 mole percent of another lactone is disclosed. The cayalysts used have the formula MZ.sub.3 wherein M is scandium, yttrium, bismuth, a lanthanide series rare earth metal or a mixture thereof and the Zs are independently the same or different highly coordinating ligands. The preferred metals M are lanthanum, cerium, praseodymium and neodymium with lanthanum being especially preferred. The preferred ligands are betadiketones, betaketoesters and malonate anions with the betadiketones such as 2,2,6,6-tetramethyl-3,5-heptanedionates being especially preferred.Type: GrantFiled: December 22, 1992Date of Patent: March 8, 1994Assignee: E. I. Du Pont de Nemours and CompanyInventors: Thomas M. Ford, Stephan J. McLain
-
Patent number: 5235031Abstract: A process for polymerizing lactide and up to 20 mole percent of another lactone in the absence of solvent at 100.degree. to 220.degree. C. using an yttrium or lanthanide series rare earth metal catalyst.Type: GrantFiled: March 13, 1992Date of Patent: August 10, 1993Assignee: E. I. Du Pont de Nemours and CompanyInventors: Neville E. Drysdale, Thomas M. Ford, Stephan J. McLain
-
Patent number: 5208297Abstract: A process for polymerizing lactide and up to 20 mole percent of another lactone is disclosed. The cayalysts used have the formula MZ.sub.3 wherein M is scandium, yttrium, bismuth, a lanthanide series rare earth metal or a mixture thereof and the Zs are independantly the same or different highly coordinating ligands. The preferred metals M are lanthanum, cerium, praseodymium and neodymium with lanthanum being especially preferred. The preferred ligands are betadiketones, betaketoesters and malonate anions with the beta diketones such as 2,2,6,6-tetramethyl-3,5-heptanedionates being especially preferred.Type: GrantFiled: December 30, 1991Date of Patent: May 4, 1993Assignee: E. I. Du Pont de Nemours and CompanyInventors: Thomas M. Ford, Stephan J. McLain
-
Patent number: 5095098Abstract: Process for yttrium and rare earth compound catalyzed polymerization of lactones and the living polymer compositions of such polymerizations, novel polyester products of such polymerizations and novel yttrium and rare earth metal compounds useful as catalysts in the polymerization of biodegradable polymers for medical uses and flexible films for packaging.Type: GrantFiled: April 3, 1991Date of Patent: March 10, 1992Assignee: E. I. Du Pont de Nemours and CompanyInventors: Stephan J. McLain, Neville E. Drysdale
-
Patent number: 5028667Abstract: Process for yttrium and rare earth compound catalyzed polymerization of lactones and the living polymer compositions of such polymerizations, novel polyester products of such polymerizations and novel yttrium and rare earth metal compounds useful as catalysts in the polymerization of biodegradable polymers for medical uses and flexible films for packaging.Type: GrantFiled: September 29, 1989Date of Patent: July 2, 1991Assignee: E.I. Du Pont de Nemours and CompanyInventors: Stephan J. McLain, Neville E. Drysdale