Development of Single-Site New Olefin Polymerization Catalyst Systems Using MgCl2-Based Activators: MAO-Free MgCl2-Supported FI Catalyst Systems
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[1] M. Onda,et al. Regio‐ and Stereochemistry in Propylene Polymerization Catalyzed with Bis(phenoxy‐imine) Zr and Hf Complexes/MAO Systems , 2003 .
[2] H. Terao,et al. Recent Advances in Phenoxy-Based Catalysts for Olefin Polymerization , 2003 .
[3] T. Fujita,et al. Bis(Phenoxy‐Imine) Zr Complexes/Et3Al/Heteropoly Compound Catalyst Systems for Ethylene Polymerization , 2003 .
[4] Yasuhiko Suzuki,et al. Highly active, thermally robust V-based new olefin polymerization catalyst system , 2003 .
[5] T. Nakano,et al. Unprecedented living olefin polymerization derived from an attractive interaction between a ligand and a growing polymer chain. , 2003, Chemistry.
[6] M. Mitani,et al. Ethylene and propylene polymerization behavior of a series of bis(phenoxy–imine)titanium complexes , 2003 .
[7] M. Mitani,et al. Ethylene and Ethylene/Propylene Polymerization Behavior of Bis(phenoxy‐imine) Zr and Hf Complexes with Perfluorophenyl Substituents , 2003 .
[8] N. Kashiwa,et al. New olefin polymerization catalyst systems comprised of bis(phenoxy-imine) titanium complexes and MgCl2-based activators , 2003 .
[9] H. Terao,et al. Syndiospecific living propylene polymerization catalyzed by titanium complexes having fluorine-containing phenoxy-imine chelate ligands. , 2003, Journal of the American Chemical Society.
[10] Boping Liu,et al. Stereospecific Nature of Active Sites on TiCl4/MgCl2 Ziegler–Natta Catalyst in the Presence of an Internal Electron Donor , 2003 .
[11] Jun-ichi Mohri,et al. Combination system of fluorine-containing phenoxy-imine Ti complex and chain transfer agent: A new methodology for multiple production of monodisperse polymers , 2003 .
[12] Yasuhiko Suzuki,et al. Higher α-Olefin Polymerization Behavior of a Bis(Phenoxy-Imine)Titanium Complex/i-Bu3Al/Ph3CB(C6F5)4Catalyst System , 2003 .
[13] M. Onda,et al. Polyethylenes with Uni-, Bi-, and Trimodal Molecular Weight Distributions Produced with a Single Bis(phenoxy−imine)zirconium Complex , 2003 .
[14] S. Kojoh,et al. 131 Creation of new polymers using terminally unsaturated polyolefins prepared with FI catalysts , 2003 .
[15] M. Mitani,et al. 6 Ethylene polymerization behavior of polymethylene-bridged bis (phenoxy-imine) Zr complexes , 2003 .
[16] T. Nakano,et al. 129 Syndiospecific living polymerization of propylene with fluorine-containing titanium Fl catalyst , 2003 .
[17] V. C. Gibson,et al. Advances in non-metallocene olefin polymerization catalysis. , 2003, Chemical reviews.
[18] M. Onda,et al. Propylene Polymerization with Bis(phenoxy‐imine) Group‐4 Catalysts Using iBu3Al/Ph3CB(C6F5)4 as a Cocatalyst , 2002 .
[19] T. Nakano,et al. Catalytic behavior of bis(pyrrolide-imine) and bis(phenoxy-imine) titanium complexes for the copolymerization of ethylene with propylene, 1-hexene, or norbornene , 2002 .
[20] M. Seth,et al. A Density Functional Embedded Cluster Study of Proposed Active Sites in Heterogeneous Ziegler−Natta Catalysts , 2002 .
[21] T. Nakano,et al. A Bis(phenoxy‐imine)Zr Complex for Ultrahigh‐Molecular‐Weight Amorphous Ethylene/Propylene Copolymer , 2002 .
[22] S. Kojoh,et al. Zirconium complexes having phenoxy/cycloalkylimine chelate ligands for the polymerization of ethylene for vinyl-terminated low molecular weight polyethylenes , 2002 .
[23] N. Kashiwa,et al. FI Catalysts: A New Family of High Performance Catalysts for Olefin Polymerization , 2002 .
[24] H. Terao,et al. Fluorine- and trimethylsilyl-containing phenoxy--imine Ti complex for highly syndiotactic living polypropylenes with extremely high melting temperatures. , 2002, Journal of the American Chemical Society.
[25] Y. Inoue,et al. New Titanium Complexes Bearing Two Indolide-Imine Chelate Ligands for the Polymerization of Ethylene , 2002 .
[26] T. Nakano,et al. Living polymerization of ethylene catalyzed by titanium complexes having fluorine-containing phenoxy-imine chelate ligands. , 2002, Journal of the American Chemical Society.
[27] N. Kashiwa,et al. Synthesis and Ethylene Polymerization Behavior of a New Titanium Complex Having Two Imine–Phenoxy Chelate Ligands , 2002 .
[28] N. Kashiwa,et al. Highly active ethylene polymerization catalysts based on titanium complexes having two phenoxy-imine chelate ligands , 2002 .
[29] G. Yap,et al. Stability of Metal−Carbon Bond versus Metal Reduction during Ethylene Polymerization Promoted by a Vanadium Complex: The Role of the Aluminum Cocatalyst , 2002 .
[30] Y. Imanishi,et al. Olefin Polymerization and Ring-Opening Metathesis Polymerization of Norbornene by (Arylimido)(aryloxo)vanadium(V) Complexes of the Type VX2(NAr)(OAr`). Remarkable Effect of Aluminum Cocatalyst for the Coordination and Insertion and Ring-Opening Metathesis Polymerization , 2002 .
[31] T. Nakano,et al. A New Titanium Complex Having Two Phenoxy-Imine Chelate Ligands for Ethylene Polymerization , 2002 .
[32] T. Nakano,et al. New Titanium Complexes Having Two Pyrrolide−Imine Chelate Ligands: Syntheses, Structures, and Ethylene Polymerization Behavior , 2001 .
[33] P. Galli,et al. Technology: driving force behind innovation and growth of polyolefins , 2001 .
[34] Y. Inoue,et al. Ethylene Polymerization Behavior of New Titanium Complexes Having Two Phenoxy-Pyridine Chelate Ligands. , 2001 .
[35] T. Nakano,et al. Microstructure of Highly Syndiotactic “Living” Poly(propylene)s Produced from a Titanium Complex with Chelating Fluorine-Containing Phenoxyimine Ligands (an FI Catalyst) , 2001 .
[36] N. Kashiwa,et al. Living Polymerization of Ethylene with a Titanium Complex Containing Two Phenoxy-Imine Chelate Ligands. , 2001, Angewandte Chemie.
[37] S. Kojoh,et al. New Monodisperse Ethylene–Propylene Copolymers and a Block Copolymer Created by a Titanium Complex Having Fluorine-Containing Phenoxy-Imine Chelate Ligands , 2001 .
[38] T. Nakano,et al. A Family of Zirconium Complexes Having Two Phenoxy−Imine Chelate Ligands for Olefin Polymerization , 2001 .
[39] MatsugiTomoaki,et al. Highly Syndiospecific Living Polymerization of Propylene Using a Titanium Complex Having Two Phenoxy-Imine Chelate Ligands , 2001 .
[40] N. Kashiwa,et al. Ethylene polymerization activity under practical conditions displayed by zirconium complexes having two phenoxy-imine chelate ligands , 2001 .
[41] T. Fujita,et al. FI Catalysts: super active new ethylene polymerization catalysts , 2001 .
[42] A. Pombeiro,et al. Syntheses, structure, and reactivity of chiral titanium compounds: procatalysts for olefin polymerization. , 2001, Chemistry.
[43] G. Koten,et al. Vanadium(III) and -(IV) Complexes with O,N-Chelating Aminophenolate Ligands: Synthesis, Characterization and Activity in Ethene/Propene Copolymerization , 2001 .
[44] Boping Liu,et al. Stopped‐Flow Techniques in Ziegler Catalysis , 2001 .
[45] N. Kashiwa,et al. Polymerization of 1‐hexene with bis[N‐(3‐tert‐butylsalicylidene)phenylaminato]titanium(IV) dichloride using iBu3Al/Ph3CB(C6F5)4 as a cocatalyst , 2000 .
[46] L. Jerzykiewicz,et al. Syntheses and Structural Characterization of Vanadium and Aluminum Thiolates , 2000 .
[47] Y. Kissin,et al. A New Cocatalyst for Metallocene Complexes in Olefin Polymerization , 2000 .
[48] T. Marks,et al. Cocatalysts for metal-catalyzed olefin polymerization: activators, activation processes, and structure-activity relationships. , 2000, Chemical reviews.
[49] M. Brookhart,et al. Late-metal catalysts for ethylene homo- and copolymerization. , 2000, Chemical reviews.
[50] H. Alt,et al. Effect of the Nature of Metallocene Complexes of Group IV Metals on Their Performance in Catalytic Ethylene and Propylene Polymerization. , 2000, Chemical reviews.
[51] G. Hlatky. Heterogeneous single-site catalysts for olefin polymerization. , 2000, Chemical reviews.
[52] L. Cavallo,et al. Influence of 1,3-diethers on the stereospecificity of propene polymerization by supported Ziegler-Natta catalysts. A theoretical investigation on their adsorption on (110) and (100) lateral cuts of MgCl2 platelets , 2000 .
[53] T. Nakano,et al. New Bis(salicylaldiminato) Titanium Complexes for Ethylene Polymerization , 1999 .
[54] P. Witte,et al. Linked Cyclopentadienyl−Amide Complexes of Divalent, Trivalent, and Tetravalent Vanadium: A Vanadium “Constrained Geometry Catalyst”† , 1999 .
[55] G. Britovsek,et al. The Search for New-Generation Olefin Polymerization Catalysts: Life beyond Metallocenes. , 1999, Angewandte Chemie.
[56] J. Chien. Supported metallocene polymerization catalysis , 1999 .
[57] R. Waymouth,et al. Group 4 ansa-Cyclopentadienyl-Amido Catalysts for Olefin Polymerization. , 1998, Chemical reviews.
[58] Maurice Brookhart,et al. Highly Active Iron and Cobalt Catalysts for the Polymerization of Ethylene , 1998 .
[59] V. C. Gibson,et al. Polystyrene supports for vanadium ethylene polymerisation catalysts , 1998 .
[60] Andrew J. P. White,et al. Novel olefin polymerization catalysts based on iron and cobalt , 1998 .
[61] W. Kaminsky. Highly active metallocene catalysts for olefin polymerization , 1998 .
[62] V. Murphy,et al. Low-Coordinate (Arylimido)vanadium(V) Alkyls: Synthesis and Reactivity of V(NAr)(CH2Ph)3 (Ar = C6H3-2,6-Pri2) , 1997 .
[63] J. Cole,et al. Novel µ-methyl complexes of vanadium and their relevance to bimolecular deactivation of homogeneous imidovanadium polymerisation catalysts , 1997 .
[64] M. Bochmann. Cationic Group 4 metallocene complexes and their role in polymerisation catalysis: the chemistry of well defined Ziegler catalysts , 1996 .
[65] David Fischer,et al. Stereospecific Olefin Polymerization with Chiral Metallocene Catalysts , 1995 .
[66] J. Fischer,et al. Synthesis, Structure, and Olefin Polymerization Activity of Vanadium(V) Catalysts Stabilized by Imido and Hydrotris(pyrazolyl)borato Ligands , 1995 .
[67] Maurice Brookhart,et al. New Pd(II)- and Ni(II)-Based Catalysts for Polymerization of Ethylene and .alpha.-Olefins , 1995 .
[68] N. Coville,et al. Homogeneous group 4 metallocene ziegler-natta catalysts: The influence of cyclopentadienyl-ring substituents , 1994 .
[69] V. C. Gibson,et al. New homogeneous ethylene polymerization catalysts derived from transition metal imido precursors , 1994 .
[70] K. Soga,et al. Structure of polypropene and poly(ethylene‐co‐propene) produced with an alumina‐supported CpTiCl3/common alkylaluminium catalyst system , 1994 .
[71] S. Sivaram,et al. An unusually stable supported bis(cyclopentadienyl)titanium dichloride-trialkylaluminum catalyst system for ethylene polymerization , 1993 .
[72] M. Fontanille,et al. Polymerization of ethylene at high temperature by vanadium‐based heterogeneous Ziegler–Natta catalysts. I. Study of the deactivation process , 1993 .
[73] F. Feher,et al. Lewis acid adducts oxovanadium(V) alkyl and triphenylsiloxy complexes: synthesis, characterization, and reactivity toward ethylene , 1993 .
[74] R. F. Jordan. Chemistry of Cationic Dicyclopentadienyl Group 4 Metal-Alky I Complexes , 1991 .
[75] T. Marks,et al. [(CH3)5C5]2Th(CH3)2 surface chemistry and catalysis. Direct NMR spectroscopic observation of surface alkylation and ethylene insertion/polymerization on MgCl2 , 1988 .
[76] P. A. Vigato,et al. Catalytic activity of vanadium(III) and oxovanadium(IV) complexes in the ziegler-natta synthesis of ethylenepropylene elastomers , 1985 .
[77] N. Kashiwa,et al. Ethylene polymerization by supported vanadium catalyst. effect of carrier on activity and relationship between concentration of v(iii) and activity , 1983 .
[78] J. Chien,et al. Magnesium chloride‐supported, high‐mileage catalysts for olefin polymerization. V. BET, porosimetry, and x‐ray diffraction studies , 1983 .
[79] W. Kaminsky,et al. “Living Polymers” on Polymerization with Extremely Productive Ziegler Catalysts , 1980 .
[80] Y. Doi,et al. "Living" Coordination Polymerization of Propene Initiated by the Soluble V(acac)3-Al(C2H5)2Cl System , 1979 .
[81] Y. Doi,et al. Preparation of “living” polypropylenes by a soluble vanadium‐based Ziegler catalyst , 1979 .
[82] Hans-Dieter Martin,et al. Polymerisation von Äthylen und anderen Olefinen , 1955 .
[83] P. Corradini,et al. CRYSTALLINE HIGH POLYMERS OF α-OLEFINS , 1955 .